71
ORGANIC THIN FILM TRANSISTOR(OTFT) S. No Details of the paper including titles Dipti’s ref Volume 1. S. Steudel, K. Myny, V. Arkhipov, C. Deibel, S De Vusser, J. Genoe, P. Heremans, Nat. Mater., Vol., 4, Pages 597, ( 2005) 1.1 NA 2. D. J. Gundlach, Nat. Mater., Vol. 6, Pages 173, ( 2007) 1.2 NA 3. G. Gelinck, Nature, Vol. 445, Pages 268, ( 2007) Semiconductor Electronocs: Trapped fast at the gate 1.3 Vol.1 4. M. Muccini, Nat. Mater., Vol. 5, Pages 605, ( 2006) 1.4 NA 5. I. Mcculloch, Nat. Mater., Vol. 4, Pages 583, ( 2005) 1.5 NA 6. J. A. Rogers, Science, Vol. 291, Pages 1502, ( 2001) Electronics: Toward Paperlike Displays 1.6 Vol.1 7. G. Leising, B. Stadlober, U. Haas, A. Haase, C. Palfinger, H. Gold and G. Jakopic, Microelec. Engg., Vol. 83, Pages 831, (2006) Nanoimprinted devices for integrated organic electronics 1.7 Vol.1 8. J. B. Lee, P. C. Chang, J. A. Liddle, and V. Subramanian, IEEE Trans. Elec. Devices, Vol. 52, Pages 1874, (2005) Io-nm Channel Length Pentacene Transistors 1.8 Vol.1 9. A. J. Steckl, Nature Photonics, Vol. 1, Pages 3, (2006) 1.9 NA 10. M. Ratner, Nature, Vol. 435, Pages 575, (2005) Molecular Electronis: Charged with manipulation 1.10 Vol.1 11. E. Cantatore, T. Geuns, A. Gruijthuijsen, G. Gelinck, S. Drews, D. de Leeuw. ISSCC Dig. Tech. Papers, Pages 272, (2006) 1.11 NA 12. R.R.Rotzoll, S. Mohapatra, V. Olariu, R. Wenz, M. Grigas, O. Shchekin, K. Dimmler, A. Dodabolapur, Appl. Phys. Lett. Vol. 88, Pages 123502, (2006) Radio frequency rectifiers based on organic thin film transistors 1.12 Vol.1 13. G .H. Gelinck, H. E. A. Huitema, E. van Veenendaal, E. Cantatore, L. Schrijnemakers, J. B. P. H. van der Putten, T. C. T. Geuns, M. Beenhakkers, J. B. Giesbers, B.-H. Huisman, E. J. Meijer, E. M Benito, F. J. Touwslager, A. W.Marsman, B. J. E van Rens, D. M. de Leeuw, Nat. Mater., Vol. 3, Pages 106, ( 2004) 1.13 NA 14. H. Shirakawa, E. J. Louis, A. G. MacDiarmid, C. K. Chiang and A. J.Heeger, J. Chem. Soc., Chem. Commun.,Pages 578, (1977) 2.1 NA 15. C. K. Chiang, C. R. Fincher, Y.W. Park, A. J. Heeger, H. Shirakawa, E. J. Louis, S. C. Gau, and A. G. MacDiarmid, Phys. Rev. Lett., Vol. 39, Pages 1098, (1977) Electrical conductivity in Doped Polyacetylene 2.2 Vol.1 16. F. Ebisawa, T. Kurokawa and S. Nara. J. App. Phys., Vol. 54, Pages 3255, (1983) Electrical properties of polyacetylene/polysiloxane interface 2.3 Vol.1 17. M. Pope, H. Kallmann and P. Magnante, J. Chem. Phys. Vol. 38, Pages 2042, (1963) 2.4 Vol.1

Electronic Materials Library

Embed Size (px)

Citation preview

Page 1: Electronic Materials Library

ORGANIC THIN FILM TRANSISTOR(OTFT) S.

No

Details of the paper including titles Dipti’s

ref

Volume

1. S. Steudel, K. Myny, V. Arkhipov, C. Deibel, S De Vusser, J. Genoe, P. Heremans, Nat. Mater., Vol., 4, Pages 597, ( 2005)

1.1 NA

2. D. J. Gundlach, Nat. Mater., Vol. 6, Pages 173, ( 2007) 1.2 NA

3. G. Gelinck, Nature, Vol. 445, Pages 268, ( 2007) Semiconductor Electronocs:

Trapped fast at the gate

1.3 Vol.1

4. M. Muccini, Nat. Mater., Vol. 5, Pages 605, ( 2006) 1.4 NA

5. I. Mcculloch, Nat. Mater., Vol. 4, Pages 583, ( 2005) 1.5 NA

6. J. A. Rogers, Science, Vol. 291, Pages 1502, ( 2001) Electronics:

Toward Paperlike Displays

1.6 Vol.1

7. G. Leising, B. Stadlober, U. Haas, A. Haase, C. Palfinger, H. Gold and G. Jakopic, Microelec. Engg., Vol. 83, Pages 831, (2006) Nanoimprinted devices for integrated organic electronics

1.7 Vol.1

8. J. B. Lee, P. C. Chang, J. A. Liddle, and V. Subramanian, IEEE Trans. Elec. Devices, Vol. 52, Pages 1874, (2005) Io-nm Channel Length Pentacene Transistors

1.8 Vol.1

9. A. J. Steckl, Nature Photonics, Vol. 1, Pages 3, (2006) 1.9 NA

10. M. Ratner, Nature, Vol. 435, Pages 575, (2005) Molecular Electronis:

Charged with manipulation

1.10 Vol.1

11. E. Cantatore, T. Geuns, A. Gruijthuijsen, G. Gelinck, S. Drews, D. de Leeuw. ISSCC Dig. Tech. Papers, Pages 272, (2006)

1.11 NA

12. R.R.Rotzoll, S. Mohapatra, V. Olariu, R. Wenz, M. Grigas, O. Shchekin, K. Dimmler, A. Dodabolapur, Appl. Phys. Lett. Vol. 88, Pages 123502, (2006) Radio frequency rectifiers based on organic thin film

transistors

1.12 Vol.1

13. G .H. Gelinck, H. E. A. Huitema, E. van Veenendaal, E. Cantatore, L. Schrijnemakers, J. B. P. H. van der Putten, T. C. T. Geuns, M. Beenhakkers, J. B. Giesbers, B.-H. Huisman, E. J. Meijer, E. M Benito, F. J. Touwslager, A. W.Marsman, B. J. E van Rens, D. M. de Leeuw, Nat. Mater., Vol. 3, Pages 106, ( 2004)

1.13 NA

14. H. Shirakawa, E. J. Louis, A. G. MacDiarmid, C. K. Chiang and A. J.Heeger, J. Chem. Soc., Chem. Commun.,Pages 578, (1977)

2.1 NA

15. C. K. Chiang, C. R. Fincher, Y.W. Park, A. J. Heeger, H. Shirakawa, E. J. Louis, S. C. Gau, and A. G. MacDiarmid, Phys. Rev. Lett., Vol. 39, Pages 1098, (1977) Electrical conductivity in Doped Polyacetylene

2.2 Vol.1

16. F. Ebisawa, T. Kurokawa and S. Nara. J. App. Phys., Vol. 54, Pages 3255, (1983) Electrical properties of polyacetylene/polysiloxane interface

2.3 Vol.1

17. M. Pope, H. Kallmann and P. Magnante, J. Chem. Phys. Vol. 38, Pages 2042, (1963)

2.4 Vol.1

Page 2: Electronic Materials Library

Electroluminescence in Organic Crystals*

18. W. Helfrich and W.G. Schneider, Phys. Rev. Lett. Vol.14, Pages 229, (1965) Recombination Radiation in Anthracene Crystals*

2.5 Vol.1

19. C. W. Tang and S. A. Van Slyke, Appl. Phys. Lett. Vol. 51, Pages 913, (1988) Organic Electroluminescent Diodes

2.6 Vol.1

20. M. Pope, and C. E. Swenberg, Electronic Processes in Organic Crystals and Polymers, 2nd ed. Oxford University Press, New York, (1999)

2.7 NA

21. R.D.Boer, PhD Thesis, Technical University Delft 2.8 NA

22. E. A. Silinsh, and V.Capek, Organic Molecular Crystals: Interaction, Localization, and Transport Phenomena AIP Press, Woodbury, (1994)

2.9 NA

23. R. Farchioni, and G. Grosso, Organic electronic Materials (Springer-Verlag, Berlin, 2001)

2.10 NA

24. R. Silbey, J. Jortner, S. A. Rice, and M. T. Vala, J. Chem. Phys. Vol. 42, Pages 733, (1965) Exchange Effects on the Electron and Hole Mobility in

Crystalline Anthracene and Naphthalene

2.11 Vol.1

25. G. Brocks, J. van den Brink, and A. F. Morpurgo, Phys. Rev. Lett. Vol. 93, Pages 146405, (2004) Electronic Correlations in Oligo-acene and -Thiophene

Organic Molecular Crystals

2.12 Vol.1

26. S. M. Sze, Physics of Semiconductor Devices Wiley, New York, (1981)

2.13 NA

27. P. G. Le Comber and W. E. Spear, Phys. Rev. Lett. Vol. 25, Pages 509, (1970) Electronic Transport in Amorphous Silicon Films

2.14 Vol.1

28. G. Horowitz, R. Hajlaoui and P. Delannoy, J. Phys., Vol. 5, Pages 355, (1955)

2.15 NA

29. G. Horowitz, M. E. Hajlaoui and R. Hajlaoui. J. Appl. Phys., Vol. 87, Pages 4456, (2000) Temperature and gate voltage dependence of hole mobility

in polycrystalline oligothiophene thin film transistors

2.16 Vol.1

30. G. Horowitz and M. E. Hajlaoui. Synth. Met., Vol. 122, Pages 185, (2001) Grain size dependent mobility in polycrystalline Organic

Field – Effect Transistors

2.17 Vol.1

31. T.Kamins, Polycrystalline silicon fro integrated circuits, Kluwer publications, Dordrecht, 1998

2.18 NA

32. R.A.Street, J.E.Northrup and A.Salleo, Physical Re. B, Vol. 71, Pages 165202, (2005) Transport in polycrystalline polymer thin - film transistors

2.19 Vol.1

33. R.A.Street, D. Knipp and A.Volkel, Appl. Phys. Lett., Vol. 80, Pages 1658, (2002) Hole transport in polycrystalline pentacene transistors

2.20 Vol.1

34. G. A. Armstrong, S. Uppal, S. D. Brotherton and J. R. Ayres. Jap. J. Appl. Phys., Vol. 37, (1998)

2.21 NA

35. E. M. Conwell, Phys. Rev. Vol. 103, Pages 51, (1956) 2.22 NA

Page 3: Electronic Materials Library

36. N. F. Mott, Can. J. Phys. Vol. 34, Pages 1356, (1956) 2.23 NA

37. A. Miller, E. Abrahams, Phys. Rev. Vol. 120, Pages 745, (1960) 2.24 NA

38. J. Yamashita and T. Kurosawa, J. Phys. Chem. Solids Vol. 5, Pages 34, (1958) ON ELECTRONIC CURRENT IN NiO

2.25 Vol.1

39. T. Holstein, Ann. Phys, Vol. 8, Pages 325, (1959) Studu of Poaron Motion

Part-1. The Molecular – Crystal Model

2.26 Vol.1

40. K. Fesser, A. R. Bishop and D. K. Campbell, Phys. Rev. B Vol. 27, Pages 4804, (1983)

2.27 NA

41. R. A. Marcus, J. Chem. Phys., Vol. 81, Pages 4494, (1984) Nonadiabatic processes involving quantum-like and

classical-like coordinates with applications to nonadiabatic

electron transfers

2.28 Vol.1

42. H. E. Katz, J. Johnson, A. J. Lovinger and W. J. Li, Am. Chem. Soc., Vol. 122, Pages 7787, (2000)

Naphthalenetetracarboxylic Diimide-Based n – Channel

Transistor Semiconductors: Structural Variation and Thiol-

Enhanced Gold Contacts

2.29 Vol.1

43.

R. J. Chesterfield, J. McKeen, C. R. Newman, P.C. Ewbank and C.D. Frisbie, J. Phys. Chem. B, Vol.108, Pages 19281, (2004)

Organic Thin Film Transistors Based on N-AlkylPerylene

Diimides: Charge Transport Kinetics as aFunction of Gate

Voltage and Temperature

2.30 Vol.1

44. S. Tatemichi, M. Ichikawa, T. Koyama, and Y. Taniguchi, Appl. Phys. Lett. Vol. 89, Pages 112108, (2006)

High mobility n – type thin film transistors based on

N,N’ – ditridecyl perylene diimide with thermal treatments

2.31 Vol.2

45. P.M. Borsenberger and D.S. Weiss, Organic Photoreceptors for Imaging Systems, Marcel Dekker, New York, (1993)

2.32 NA

46. M. A. Lampert and P. Mark, Current injection in solids, Academic Press, NewYork, (1970)

2.33 NA

47. G. Horowitz, J. Mater. Res. Vol. 19, Pages 194, (2004) 2.34 NA

48. L. Bürgi, T. J. Richards, R. H. Friend, and H. Sirringhaus, J. Appl. Phys., Vol. 94, Pages 6129, (2003) Close look at charge carrier injection in polymer Field-

Effect- Transistors

2.35 Vol.2

49. A. F. Stassen, R. W. de Boer, N. N. Iosad, and A. F. Morpurgo, Appl. Phys.Lett. Vol. 85, Pages 3899, (2004) Influence of the gate dielectric on the mobility of rubrene

single-crystal Field Effect Transistoras

2.36 Vol.2

50. D. Dimitrakopoulos and D. J. Mascaro, IBM J. Res. Dev.,Vol. 45, Pages 11, (2001) Organic Thin – Film Transistors :A review of recent

advances

2.37 Vol.2

51. C. D. Dimitrakopoulos and P. R. Malenfant, Adv. Mater. 2.38 NA

Page 4: Electronic Materials Library

Vol.14, Pages 99, (2002) 52. T. Tsumura, H. Koezuka and T. Ando, Appl. Phys. Lett, Vol.

49, Pages 1210, (1986) Macromolecular Electronic Devece: Field - Effect -

Transistor with a polythiophene thin film

2.39 Vol.2

53. A. Assadi, C. Svensson, M.Willander and O.Inganas, Appl. Phys. Lett, Vol. 53, Pages 195, (1988) Field -Effect mobility of poly(3 - hexylthiophene)

2.40 Vol.2

54. T. J. Prosa, M. J. Winokur, J. Moulton, P. Smith and A. J. Heegar, Macromoecules, Vol. 25, Pages 4364, (1992)

2.41 NA

55. J. Fell, E. J. Samuelson, J. Nielson, G, Grubel and J. Mardalen, Solid Stat Comm. Vol. 94, Pages 843, (1995) Unexpected Orientational effects in Spin – Cast, Sub –

Micron layers of poly(Alkylthiophene) s: A diffraction study

with Synchrotron Radiation

2.42 Vol.2

56. Z. Bao, A. Dodabalapur and A. J. Lovinger, Appl. Phys. Lett, Vol. 69, Pages 4108, (1996) Soluble and processable regioregular poly

(3 - hexylthiophene) for thin film Field - Effect Transistor

application with high mobility

2.43 Vol.2

57. Z. Bao and A. J. Lovinger, Chem. Mater, Vol.11, P2607, (1999) Soluble Regioregular Poly thiophene Derivatives as

Semiconducting Materials for Field- Effect-Transistors

2.44 Vol.2

58. H. Sirringhaus, N. Tessler and R. H. Friend, Science, Vol. 280, Pages 1741, (1998) Integrated Opoelectronic Devices Based on Congugated

Polymers

2.45 Vol.2

59. H. Sirringhaus, P. J. Brown, R. H. Friend, M. M. Nielson, K. Bechgard, B. M. W. Langeveld-Voss, A. H. Spiering, R. A. J. Janssen, E. W. Meijer, P. Herwig and D. M. de Leeuw, Nature, Vol. 401, Pages 685, (1999) Two – dimensional charge transport in self-organized, high-

mobility conjugated polymers

2.46 Vol.2

60. R. D. McCullough, Adv. Mater, Vol. 10, Pages 1, (1998) 2.47 NA

61. T. A. Chen and R. D. Rieke, J. Am. Chem, Soc, Vol. 114, Pages 10087, (1992) The First Regioregulator Head –to Tail

Poly (3 – hexylthiophene – 2,5diyl) and a

Regiorandom Isopolymer: Ni, vs Pd Catalysis of

2(5) – Bromo –5(2) –(Bromozincio) – hexyithiophene

Polymerization

2.48 Vol.2

62. H. Sirringhaus, R. J. Wilson, R. H. Friend, M. Inbasekaran, W. Wu, E. P. Woo, M. Grell and D. D. C. Bradley, App. Phys. Lett, Vol. 77, Pages 406, (2000) Mobility Enhancement in Conjugated Polymer Field- Effect

– Transistors through chain alignment in a Liquid-

Crystalline Phase

2.49 Vol.2

63. H. Fuchigami, A. Tsumura and H. Koezuka, App. Phys. Lett, Vol. 63, Pages 1372, (1993) Polythienylenevinylene Thin –Film- Transistor with high

2.50 Vol.2

Page 5: Electronic Materials Library

carrier mobility

64. C. T. Kuo, S. A. Chen G. W. Hwang and H. H. Kuo, Synth. Met, Vol. 93, Pages 155, (1998) Field – Effect – Transistor with the water - soluble self-acid-

doped polyaniline thin film as semiconductor

2.51 Vol.2

65. C. T. Kou and T. R. Liou, Synth. Met, V. 82, Pages 167, (1996) Characterization of metal-oxide-semiconductor field-

effect-transistor (MOSFET) for polyprrole and poly

(N - Alkylpyrrole)s prepared by electrochemical synthesis

2.52 Vol.2

66. R. B. Aust, W. H. Bentley, and H. G. Drickamer, J. Chem. Phys., Vol. 41, Pages 1856, (1964) Behavior of fused – Ring Aromatic Hydrocarbons at very

High Pressure

2.53 Vol.2

67. G. Horowitz, X.-Z. Peng, D. Fichou and F. Garnier, Synth. Met., Vol. 51, Pages 419, (1992) Role of the semiconductor/insulator interface in the

Characteristicks of л – conjugated – oligomer – based thin -

film transistors

2.54 Vol.2

68. D. Dimitrakopoulos, A. R. Brown, and A. Pomp, J. Appl. Phys. Vol. 80, Pages 2501, (1996) Molecular beam deposited thin films of pentacene for

organic field-effect-transistor application

2.55 Vol.2

69. S. F. Nelson, Y. Y .Lin, D. J. Gundlach and T. N. Jackson, Appl. Phys. Lett, Vol. 72. Pages 1854, (1998) Temperature - independent transport in high mobility

pentacene transistors

2.56 Vol.2

70. Y. Y. Lin, D. J. Gundlach, and T. N. Jackson, 54th Annual Device Research Conference Digest, 80 (1996).

2.57 NA

71. Y. Y. Lin, D. J. Gundlach, S. Nelson and T. N. Jackson, IEEE Electron Device Lett, Vol. 18, Pages 606, (1997) Stacked Pentacene Layer Organic Thin-Film Transistors

with Improved Characteristics

2.58 Vol.2

72. H. Klauk, M. Halik, U. Zschieschang, G. Schmid, W. Radlik and W. J. Weber, Appl. Phys. Vol. 92, Pages 5259, (2002) High - mobility polymer gate dielectric pentacene thin film

transistors

2.59 Vol.2

73. T. W. Kelley, L. D. Boardman, T. D. Dunbar, D.V. Muyres, M. J. Pellerite and T. P. J. Smith, Phys. Chem. B. Vol. 107, Pages 5877, (2003)

2.60 NA

74. T. W. Kelley, D.V. Muyres, P.F. Baude, T. P. Smith and T. D. Jones, Mater. Res. Soc. Symp. Proc. L6.5, Pages 771, (2003)

2.61 NA

75. N. C. Greenham, C. D. Dimitrakopoulos, and C. D. Frisbie, Mater. Res. Soc. Symp. Proc. Vol. 771, Pages 169, (2003)

2.62 NA

76. C.W. Chen, T.C. Chang, Po-T. Liu, H.Y. Lu, K. C. Wang, C. S. Huang, C. C. Ling and T. Y. Tseng, IEEE Elec. Dev. Lett, Vol. 26, Pages 731, (2005)

High - Performance Hydrogenated Amorphous –Si TFT For

AMLCD and AMOLED Applications

2.63 Vol.2

77. F. Garnier, R. Hajlaoui, A. Yassar and P. Srivastava. Science, 2.64 NA

Page 6: Electronic Materials Library

78.Vol. 265, Pages 1684, (1994) 78. A. Dodabalapur, L. Torsi and H. E. Katz, Science, Vol. 268,

Pages 270, (1995) 2.65 NA

79. H. E. Katz, A. J. Lovinger, J. G. Laquindanum, Chem. Mat, Vol. 10, Pages 457, (1998)

CHEMISTRY OF MATERIALS

2.66 Vol.2

80. J. G. Laquindanum, H. E. Katz and A. J. Lovinger, J. Am. Chem. Soc, Vol. 120, Pages 664, (1998)

2.67 NA

81. G. Guillaud and J. Simon, Chem. Phys. Lett, Vol. 219, Pages 123, (1994)

2.68 NA

82. D. F. Barbe and C. R. Westgate, J. Chem. Phys, Vol. 52, Pages 4046, (1970)

Bulk Trapping States in β – Phthalocyanine Single Crystals

2.69 Vol.2

83. Z. N. Bao, A. Dodabalapur and A. J. Lovinger, App. Phys. Lett, Vol. 69, Pagaes 3066, (1996)

Organic field-effect transistors with high mobility based on

copper phthalocyanine

2.70 Vol.2

84. R. W. I. de Boer, A. F. Stassen, M. F. Craciun, C. L. Mulder, A. Molinari, S. Rogge, and A. F. Morpurgo, Appl. Phys. Lett. Vol. 86, Pages 262109, (2005)

Ambipolar Cu and Fe-Phthalocyanine single crystals Field –

Effect Transistors

2.71 Vol.2

85. C. R. Kagan, D. B. Mitzi and C. D. Dimitrakopoulos, Science, Vol. 286, Pages 945, (1999)

2.72 NA

86. K.Bradley, J.C.P.Gabriel and G. Gruner, Nano Lett., Vol. 3, Pages 1353, (2003)

Flexible Nanotube Electronics

2.73 Vol.2

87. K.Xiao, Y.Q. Liu, P.A. Hu, G. Yu, X.B. Wang and D.B. Zhu, Appl. Phys. Lett., Vol. 83, Pages 150, (2003)

High-mobility thin film transistors based on aligned carbon

nanotubes

2.74 Vol.2

88. E. S. Snow, J. P. Novak and P.M. Campbell, D. Park, Appl. Phys. Lett.,Vol. 82, Pages 2145, (2003)

Random networks of carbon nanotubes as an electronic

material

2.75 Vol.2

89. I. G. Hill, A. Kahn, Proc. SPIE, Vol. 168, Pages 3476, (1998) 2.76 NA

90. C.R. Newman, C. D. Frisbie, Demetrio A. da S. Filho, J. L. Bredas, P. C. Ewbank and K. R. Mann, Chem. Mater., Vol. 16, Pages 4436, (2004) Introduction to Organic Thin Film Transistors and Design

of n –Channel Organic Semiconductors

2.77 Vol.2

91. D. M. de Leeuw, M. M. Simenon, A. R. Brown and R. E. F. 2.78 NA

Page 7: Electronic Materials Library

Einerhand, Synth. Met., Vol. 87, Pages 53, (1997). 92. G. Guillaud, M. A. Sadound and M. Maitrot, Chem. Phys. Lett,

Vol. 167, Pages 503, (1990) 2.79 NA

93. Z. Bao, A. J. Lovinger, A. R. Brown, J. J. Am. Chem. Soc., Vol. 120, Pages 207, (1998)

New Air-Stable n- Channel Organic Thin Film Transistors

2.80 Vol.2

94. X. Yan, J. Wang, H. Wang, He Wang and D. Yan, Appl. Phys. Lett. Vol. 89, Pages 053510, (2006) Improved n-type organic transistors by introducing

Organic hetrojunction buffer layer under source/drain

electrodes

2.81 Vol.2

95. A. R. Brown, D. M. de Leeuw, E .J. Lous and E. E. Havinga, Synth. Met., Vol. 66, Pages 257, (1994)

2.82 NA

96. S. Kobayashi, T. Takenobu, S. Mori, A. Fujiwara and Y. Iwasa, Appl. Phys. Lett. Vol. 82, Pages 4581, (2003)

Fabrication and characterization of C60 thin film transistors

high field-effect mobility

2.83 Vol.2

97. Th. B. Singh, N. Marjanović, G.J. Matt, S. Günes, N.S. Sariciftci, A. Montaigne Ramil, A. Andreev, H. Sitter, R. Schwödiauer and S. Bauer, Organic Electronics, Vol. 6, Pages 105, (2005)

2.84 NA

98. A. Facchetti, Y. Deng, A. Wang, Y. Koide, H. Sirringhaus, T.J. Marks, and R. H. Friend, Angew. Chem., Int. Ed., Vol. 39, Pages 4547, (2000)

2.85 NA

99. A. Facchetti, M. Mushrush, H. E. Katz and T. J. Marks, Adv. Mater., Vol. 15, Pages 33, (2003)

2.86 NA

100. A. Facchetti, M. H. Yoon, C. L. Stern and T. J. Marks, Angew. Chem., Int. Ed, Vol. 42, Pages 390, (2003)

2.87 NA

101. M. H. Yoon, S. A. DiBenedetto, A. Facchetti, and T. J. Marks, J. Am. Chem. Soc., Vol. 127, Pages 1348, (2005)

2.88 NA

102.

A. Babel and S. A. Jenekhe, Adv. Mater., Vol. 14, P371, (2002) 2.89 NA

103. A.Babel and S. A. Jenekhe, J. Am. Chem. Soc., Vol. 125, Pages 13656, (2003)

High Electron Mobility in Ladder Polymer Field- Effect

Transistors

2.90 Vol.3

104. R. B. Campbell, J. Trotter and J. M. Robertson, Acta Cryst., Vol. 14, Pages 705, (1961)

2.91 NA

105. C. C. Mattheus, Acta Crystallogr.C, Vol. 57, Pages 939, (2001) 2.92 NA

106. C. C. Mattheus, A. B. Dros, J. Baas, G. T. Ostergetel, A. Meetsma, J. L. de Boer, and T. T. M. Palstra, Synth. Met., Vol. 138, Pages 475, (2003)

2.93 NA

107. C. C. Mattheus, G. A. de Wijs, R. A. de Groot, and T. T. M. Palstra, J. Am. Chem. Soc., Vol. 125, Pages 6323, (2003)

2.94 NA

108. D. Holmes, S. Kumaraswamy, A. J. Matzfer and K. P. 2.95 NA

Page 8: Electronic Materials Library

C.Vollhardt, Chem. Eur. J. Vol. 5, Pages 3399, (1999) 109. T. Siegrist, C. Kloc, J. H. Schön, B. Batlogg, R.C. Haddon, S.

Berg and G.A. Thomas. Angew. Chem.,Vol. 40, P1732, (2001) 2.96 NA

110. S. E. Fritz, S. M. Martin, C. D. Frisbie, M. D. Ward, and M. F. Toney, J. Am. Chem. Soc., Vol. 126, Pages 4084, (2004)

2.97 NA

111. T. Minakata, H. Imai, M. Ozaki, and K. Saco, J. Appl. Phys. Vol. 72, Pages 5220, (1992) Structural studies on highly ordered and highly conductive

thin films of pentacene

2.98 Vol.3

112. http://www.chm.bris.ac.uk/motm/pentacene/pentacene.htm 2.99 NA

113. J. S. Wu and J. C. H. Spence, J. Appl. Cryst., Vol. 37, Pages 78, (2004)

2.100 NA

114. M. M.Ling and Z. Bao, Chem. Mat, Vol.16, Pages 4824, (2004) 2.101 NA

115. G. Yoshikawa, T. Miyadera, R. Onoki, K. Ueno, I. Nakai, S. Entani, S. Ikeda, D. Guo, M. Kiguchi, H. Kondoh, T. Ohta and K. Saiki, Surface Science, Vol. 600, Pages 2518, (2006)

2.102 NA

116. D. Knipp, R. A. Street and A. Volkel, J. Ho, J. App. Phys, Vol. 93, Pages 347, (2003) Pentacene thin film transistors on inorganic dielectrics:

Morphology, structural properties, and electronic transport

2.103 Vol.3

117. T. Kakudate, N. Yoshiimoto, Y. Saito, App. Phys. Lett., Vol. 90, Pages 081903, (2007) Polymorphism in pentacene thin films on SiO2 substrate

2.104 Vol.3

118. L. F. Drummy and D. C. Martin, Adv. Mater. Vol. 17, Pages 903, (2005) Thickness-Driven Orthorhombic to Triclinic Phase

Transformation in Pentacene Thin Films

2.105 Vol.3

119. T. Jentzch, H. J. Juepner, K.W. Brzezinka, A. Lau, Thin Solid Films, Vol. 315, Pages 273, (1998) Efficiency of optical second harmonic generation from

pentacene films of different morphology and structure

2.106 Vol.3

120. I. P. M. Bouchoms, W. A. Schoonveld, J. Vrijmoeth, T.M. Klapwijk, Synth. Met, Vol. 104, Pages 175, (1999) Morphology identification of the thin film phases of vacuum

evaporated pentacene on SiO2 substrate

2.107 Vol.3

121. E. Venuti, R. G. D. Valle, A. Brillante, M. Masino, and A. Giirlando, J. Am. Chem. Soc. Vol. 124, Pages 2128, (2002)

2.108 NA

122. S. R. Forrest, Chem. Rev. (Washington, D.C.) Vol. 97, Pages 1793, (1997)

2.109 NA

123. C. B. France, P. G. Schroeder, J. C. Forstythe, and B. A. Parkinson, Langmuir Vol. 19, Paaages 1274, (2003)

2.110 NA

124. R. Ruiz, B. Nickel, N. Koch, L.C. Feldman, R.F. Haglund, A. Kahn and G. Scoles, Phys. Rev. B, Vol.67, P125406, (2003) Pentacene ultrathin film formation on reduced and oxidized

Si surface

2.111 Vol.3

125. M. Kasaya, H. Tabata, and T. Kawai, Surf. Sci., Vol. 406, Pages 302, (1998).

2.112 NA

126. L. Casalis, M. F. Danisman, B. Nickel, G. Bracco, T. Toccoli, S. Iannotta, and G. Scoles, Phys. Rev. Lett. Vol. 90, Pages 206101 (2003).

2.113 Vol.3

Page 9: Electronic Materials Library

Hyperthermal Molecular Beam Deposition of highly

ordered Organic Thin Films

127. F.-J. Meyer Zu Heringdorf, M. C. Reuter, and R. M. Tromp, Nature (London) Vol. 412, Pages 517, (2001).

2.114

NA

128. Y. Luo, G. H. Wang, J. A. Theobald, and P. H. Beton, Surf. Sci. Vol. 537, Pages 241 (2003)

2.115 NA

129. Dong Guo, Susumu Ikeda, Koichiro Saiki , Hiroyuki Miyazoe and Kazuo Terashima,J.Appl.Phys.,Vol.99,Pages 94502, (2006) Effect of annealing on the mobility and morphology of

Thermally activated pentacene thin film transistors

2.116 Vol.3

130. R. Ruiz, D.Chowdhary, B.Nickel, T.Toccoli, K.C.Chang, A.C.Mayer, P.Clancy, J.M.Blakley, R.L.Headrick, S.Iannotta and G.G.Malliaras, Chem. Mater, Vol. 16, Pages 4497, (2004) Pentacene Thin Film Growth

2.117 Vol.3

131. B. Nickel, R. Barabash, R. Ruiz, N. Koch, A. Kahn, L. C. Feldman, R. F. Haglund and G. Scoles, Phys. Rev. B Vol. 70, Pages 125401, (2004) Dislocation arrangements in pentacene thin films

2.118 Vol.3

132. Serkan Zorba, Yonathan Shapir and Yongli Gao, Phys. Rev. B Vol. 74, Pages 245410 (2006)

2.119 NA

133. S. Verlaak, C. Rolin, and P. Heremans, J. Phys. Chem. B, Vol. 111, Pages 139, 2007 Microscopic Description of Elementary Growth Processes

and Classification of structural Defects in Pentacene Thin

Films

2.120 Vol.3

134. A. Bolognesi, M. Berliocchi, M. Manenti, A. Di Carlo, P. Lugli, K. Lmimouni, and C. Dufour, IEEE Trans. Electron Devices, Vol. 51, Pages 1997, (2004)

2.121 Ch-

5/18

135. G. Horowitz, R. Hajlaoui, R. Bourguiga, and M. E. Hajlaoui, Synth. Met. Vol. 101, Pages 401, (1999) Theory of the organic field-effect transistors

2.122 Vol.3

136. Jiyoul Lee, J. H. Kim, and Seongil Im, Journal of Applied Physics, Vol. 95, , Pages 3733–3736, (2004) Effects of substrate temperature on the device properties of

pentacene-baesd thin film transistors using Al2 O3+X gate

dielectric

2.123 Vol.3

137. D. J. Gundlach, L.Zhou, J.A.Nichols, T.N.Jackson, P.V.Necliudov and M.S.Shur, J. App. Phys, Vol. 100, Pages 024509, (2006) An experimental study of contact effects in organic thin film

transistors

2.124 Vol.3

138. R. A. Street and A.Salleo, App. Phy. Lett, Vol. 81, Pages 2887, (2002) Contact effects in polymer transistrors

2.125 Vol.3

139. K. Sheshadri and C. D. Frisbie, Appl. Phys. Lett, Vol. 78, Pages 993, (2001) Potentiometry of an operating organic semiconductor

Field-effect transistor

2.126 Vol.3

140. N. Tessler and Y. Roichman, Appl. Phys. Lett. Vol. 79, Pages 2.127 Vol.3

Page 10: Electronic Materials Library

2987, (2001) Two-dimensional simulation of polymer field-effect

transistor

141. C.D.Dimitrakopoulos and P.R.L.Malenfant, Adv. Mater, Vol. 14, Pages 19, (2002) ..........................................

2.128 ............

142. J. H. Kang and X. Y. Zhu, Appl. Phys. Lett. Vol. 82, Pages 3248, (2003) Pi-stacked pentacene thin films growth on Au(111)

2.129 Vol.3

143. I. Kymissis, C. D. Dimitrakopoulos, and S. Purushothaman, IEEE Trans. On Elec. Dev., Vol. 48, Pages 1060, (2001) High-Performance Bottom Electrode Organic Thin Film

Transistors

2.130 Vol.3

144. F. F. Fan, J. Yang, L. Cai, D. W. Price, Jr., S. M. Dirk, D. V. Kosynkin, Y.Yao, A. M. Rawtlett, J. M. Tour, and A. J. Bard, J. Am. Chem. Soc., Vol. 124, Pages 5550, (2002) Charge Transport through self assembled Monolayers of

Compounds of Interest in Molecular Electronics

2.131 Vol.3

145. A. Salleo, M. L. Chabinyc, M. S. Yang, and R. A. Street, Appl. Phys. Lett., Vol. 81, Pages 4383, (2002) Polymer thin film transistors with chemically modified

Dielectric interfaces

2.132 Vol.3

146. D. J. Gundlach, L. L. Jia, and T. N. Jackson, IEEE Electron Device Lett., Vol. 22, Pages 571, (2001) Pentacene TFT with Improved Linear Region

Characteristics using Chemically Modified Source and

Drain Electrodes

2.133 Vol.3

147. C. Bock, D. V. Pham, and U. Kunze, D. Käfer, G. Witte, and Ch. Wöll, J. App. Phys, Vol. 100, Pages 114517, (2006) Improved morphology and charge carrier injection in

pentacene field-effect transistors with thiol-treated

electrodes

2.134 Vol.3

148. Th. B. Singh, Presentation 2.135 ??

149. B. H. Hamadani and D. Natelson, J. App. Phys., Vol. 97, Pages 064508, (2005)

2.136 NA

150. L. B2.138ürgi, T. J. Richards, R. H. Friend, and H. Sirringhaus, J. Appl. Phys., Vol. 94, Pages 6129, (2003) Close look at charge carrier injection in polymer field-effect

transistors

2.137 Vol.3

151. A. Bolognesi, A. Di Carlo, and P. Lugli, Appl. Phys. Lett. Vol. 81, Pages 4646, (2002) Influence of carrier mobility and contact barrier height on

the electrical characteristics of organic transistors

2.138 Vol.3

152. H. Ishii, K. Sugiyama, E. Ito and K. Seki, Adv. Mater., Vol. 11, Pages 605, (1999) Energy Level Alignment and Interfacial Electronic

Structures at Organic/Metal and Organic/Organic

Interfaces**

2.139 Vol.3

153. A. Kahn, N. Koch and W. Gao, J. Polym. Sci. Part B: Polym. Phys. Vol. 41, Pages 2529, (2003)

2.140 NA

Page 11: Electronic Materials Library

154. H. Ishii and K. Seki, IEEE Trans. Electron Dev. Vol. 44, Pages 1295, (1997) Energy Level Alignment at Organic/Metal Interfaces

studied by UV Photoemission: Breakdown of Traditional

Assumption of a Common Vacuum level at the Interface

2.141 Vol.3

155.

I. G. Hill, A. Rajagopal and A. Kahn, Appl. Phys. Lett., Vol. 73, Pages 662, (1998) Molecular level alignment at organic semiconductor-metal

interfaces

2.142 Vol.3

156. C. Shen, A. Kahn and J. Schwartz, J. Appl. Phys., V0l. 89, Pages 449, (2001) Chemical and electrical properties of interfaces between

magnesium and aluminum and tris-(8-hydroxy quinoline)

aluminum

2.143 Vol.4

157. X. Crispin, V. Geskin, A. Crispin, J. Cornil, R. Lazzaroni, W.R. Salaneck, and J. Bredas, J. Amer. Chem. Society, Vol. 124, Pages 8131, (2002) Characterization of the Interface Dipole at Organic/Metal

Interfaces

2.144 Vol.4

158. D. Natali, L. Fumagalli, and M. Sampietro, J. Appl. Phys., Vol. 101, Pages 014501, (2007) Modeling of organic thin film transistors: Effect of contact

resistances

2.145 Vol.4

159. D. J. Gundlach, L. Zhou, J. A. Nichols, T. N. Jackson, P. V. Necliudov and M. S. Shur, J. Appl. Phys., Vol. 100, Pages 0245099, (2006)

2.146 NA

160. J. Zaumseil, K. W. Baldwin, and J. A. Rogers, J. App. Phys., Vol. 93, Pages 6117, (2003) Contact resistance in organic transistors that use source and

drain electrodes formed by soft contact lamination

2.147 Vol.4

161. S. Luana and G. W. Neudeck, J. Appl. Phys., Vol. 72, Pages 766, (1992) An experimental study of the source/drain parasitic

resistance effects in amorphous silicon thin film transistors

2.148 Vol.4

162. S. Jain, IEE Proc., Part I: Solid-State Electron Devices, Vol. 135, Pages 162, (1988)

2.149 NA

163. A. J. Campbell, D. D. C. Bradley and E. Werner, Synth. Met. Vol. 111, Pages 273 (2000)

2.150 NA

164. Y. S. Yang, S. H. Kim and J. I. Lee, Appl. Phys. Lett. Vol. 80, Pages 1595 (2002) Deep – level defect characteristics in pentacene organic thin

films

2.151 Vol.4

165. J. Sworakowski, Mol. Cryst. Liq. Cryst. Vol. 33, P83, (1976) 2.152 NA

166. J. E. Northrup and M. L. Chabinyc, Phys. Rev. B, Vol. 68, Pages 041202, (2003) Gap states in organic semiconductors: Hydrogen – Oxygen

and – induced states in pentacene

2.153 Vol.4

167. D. Knipp, R. A. Street, A. Volkel and J.Ho, J. of App. Phys., Vol. 93, Pages 347, (2003) Pentacene thin film transistors on Inorganic dieelectric:

2.154 Vol.4

Page 12: Electronic Materials Library

Morphology, structural properties, and electronic transport

168. S. Verlaak, V. Arkhipov and P. Heremens, App. Phys. Lett, Vol. 82, Pages 745, (2003) Modeling of transport in polycrystalline organic

semiconductor films

2.155 Vol.4

169. D. V. Lang, X. Chi, T. Siegrist, A. M. Sergent, and A. P. Ramirez , Phys. Rev. Lett., Vol. 93, Pages 076601 (2004) Bias-Dependent Generation and Quenching of Defects in

Pentacene

2.156 Vol.4

170. E. M. Muller and J.A.Marohn, J. A. Adv. Mater. Vol. 17, Pages 1410, (2004). Microscopic Evidence for Spatially Inhomogeneous Charge

Trapping in Pentacene

2.157 Vol.3

171. P. Pfister and H. Scher, Adv. Phys. Vol. 27, Pages 747 (1978) 2.158 NA

172. T. Tiedje and A. Rose, Solid State Commun. Vol. 37, Pages 49 (1981) A Physical Interpretation of Dispersive Transport in

Disordered Semiconductors

2.159 Vol.4

173. M. Vissenberg and M. Matters, Phys. Rev. B, Vol. 57, Pages 12964, (1998) Theory of the field- effect mobility in amorphous organic

transistors

2.160 Vol.4

174. G. Horowitz, R. Hajlaoui, R. Bourguiga, and M. E. Hajlaoui, Synth. Met. Vol. 101, Pages 401, (1999) Theory of the organic field-effect transistor

2.161 Vol.4

175. G. Paasch, T. Linder, and S. Scheiner, Synth. Met. Vol. 132, Pages 97, (2002) Variable range hopping as possible origin of a universal

relation between conductivity and mobility in disordered

organic semiconductors

2.162 Vol.4

176. V. R. Rashmi, A. K. Balakrishnan, A. K. Kapoor, V. Kumar, S. Jain, R. Mertens, and S. Annapoorni, J. Appl. Phys. Vol. 94, Pages 5302 (2003). Effect of the field dependent trap occupancy on organic thin

film transistor characteristics

2.163 Vol.4

177. M. Maliakal, Raghavachari, Ch. Pannemann, T. Diekmann and U. Hilleringmann, J. Mater. Res. Vol. 19, Pages 1999, (2004),

2.164 NA

178. J. E. Northrup and M. L. Chabinyc, Phys. Rev. B, Vol. 68, Pages 041202, (2003), Gap states in organic semiconductors: Hydrogen – Oxygen

and – induced states in pentacene

2.165 Vol.4

179. O. D. Jurchescu, J. Bass and T.T.M. Patestra, Appl. Phys. Lett., Vol. 87, (2005)

2.166 NA

180. Z. T. Zhu, J. T. Mason, R. Dieckmann and G.G. Malliaras, Appl. Phys. Lett. Vol. 81, Pages 4643, (2002) Humidity sensors based on pentacene thin - film transistors

2.167 Vol.4

181. A. Di Carlo, F. Piacenza, A. Bolognesi, B. Stadlober and H. Maresch, Appl. Phys. Lett. Vol. 86, Pages 263501, (2005) Influence of grain sizes on the mobility of organic thin film

transistors

2.168 Vol.4

Page 13: Electronic Materials Library

182. S. Verlaak, V. Arkhipov and P. Heremans, Appl. Phys. Lett. Vol. 82, Pages 745, (2003) Modeling of transport in polycrystalline organic

semiconductor films

2.169 Vol.4

183. S. Verlaak and P. Heremans, Phys. Rev. B, Vol. 75, Pages 115127, (2007) Molecular microelectrostatic view on electronic states near

pentacene grain boundaries

2.170 Vol.4

184. A. B. Chwang and C. D. Frisbie, J. App. Phys., Vol. 90, Pages 1342, (2001) Temperature and gate voltage dependent transport across a

single oranic semiconductor grain boundary

2.171 Vol.4

185. K. Puntambekar, J. Dong, G. Haugstad and C.D. Frisbie, Adv. Funct. Mater. Vol. 16, Pages 879, (2006)

2.172 NA

186. B. Nickel, R. Barabash, R. Ruiz, N. Koch, A. Kahn, L.C. Feldman, R.C. Haglund and G. Scoles, Phys. Rev. B, Vol. 70, Pages 125401, (2004)

2.173 NA

187. M. Brinkmann, S. Graff, C. Straupe, J.C. Wittmann, C. Chaumont, F. Nuesch, A. Aziz, M. Schaer and L.J. Zuppiroli, Phys. Chem. B, Vol. 107, Pages 10531, (2003) Orienting Tetracene and Pentacene thin film onto Fraction

– Transferred Poly(Tetrafluoroethylene) Substrate

2.174 Vol.4

188. J. E. Northrup and M. L. Chabinyc, Phys. Rev. B, Vol. 68, Pages 041202, (2003)

2.175 repeat

189. L. L. Chua, J. Zaumseil, J.F.Chang, E. Ou, P.K.H. Ho, H. Sirringhaus and R.H.Friend, Nature, Vol. 434,Pages 194, (2003)

2.176 NA

190. A. Völkel, R. A. Street, and D. Knipp, Phys. Rev. B, Vol. 66, Pages 195336, (2002)

Carrier transport and density of state distributions in

pentacene transistors

2.177 Vol.4

191. D. Knipp, R. A. Street, A. Völkel, and J. Ho, J. Appl. Phys., Vol. 93, Pages 347, (2003)

2.178 NA

192. H. L. Gomes, P. Stallinga, F. Dinelli, M. Murgia, F. Biscarini, D. M. de Leeuw, T. Muck, J. Geurts, L. W. Molenkamp, and V. Wagner, Appl. Phys. Lett., Vol. 84, Pages 3184, (2004). Bias-induced threshold voltage shifts in thin-film organic

transistors

2.179 Vol.4

193.

G. Gu, M. G. Kane, J. E. Doty, and A. H. Firester, Appl. Phys. Lett., Vol. 87, Pages 243512, (2005). Electron traps and hysteresis in pentacene-based organic

trhin-film transistors

2.180 Vol.4

194. J. Zilker, C. Detcheverry, E. Cantatore, and D. M. de Leeuw, Appl. Phys. Lett., Vol. 79, Pages 1124, (2001) Bias stress in organic thin – film transistors and logic gates

2.181 Vol.5

195. T. Jung, A. Dodabalapur, R. Wenz, and S. Mohapatra, Appl. Phys. Lett., Vol. 87, Pages 182109, (2005) Moisture induced surface polarization in a poly

(4-vinyl phenol) dielectric in an organic thin film transistor

2.182 Vol.5

196. Y. Y. Noh, J. Ghim, S.-J. Kang, K.-J. Baeg, K. Yase and D.-Yu Kim, J. Appl. Phys., Vol. 100, Pages 094501, (2006)

2.183 Vol.5

Page 14: Electronic Materials Library

Effect og light irradiation on the characteristics of organic 197. Y.Y. Noh, K. Yase, and Dong-Yu Kim, J. Appl Phys.,Vol. 98,

198.Pages 074505, (2005) Highly sensitive thin film organic phototransistors: Effect of

wavelength of light source on device performance

2.184 Vol.5

198. F. Dinelli, M. Murgia, P. Levy, M. Cavallini, F. Biscarini and D.M. de Leeuw, Phys. Rev. Lett. Vol. 92, Pages 116802, (2004) Spatially Correlated Charge Transport in Organic Thin

Film Transistors

2.185 Vol.5

199. G. Horowitz, M. E. Hajlaoui, and R. Hajlaoui, J. Appl. Phys. Vol. 87, Pages 4456, (2000) Temperature and gate voltage dependence of hole mobility

in polycrystalline oligothiophene thin film transistors

2.186 Vol.5

200. G. Horowitz, R. Hajlaoui, H. Bouchriha, R. Bourguiga and M. Hajlaoui, Adv. Mat. (1998)

2.187 NA

201. B. Stadlober, U. Haas, H. Maresch, and A. Haase, Phys. Rev. B, Vol. 74, Pages 165302, (2006) Growth model of pentacene on inorganic and organic

dielectrics based on scaling and rate-equation theory

2.188 Vol.5

202. S. D. Wang, X. Dong, C. S. Lee, and S. T. Lee, J. Phys. Chem. B, Vol. 109, Pages 9892, (2005) Molecular Orientation nd Film Morphology of Pentacene on

Nativ Silicon Oxide Surface

2.189 Vol.5

203. S. Pratontep, M. Brinkmann, F. Nüesch and L. Zuppiroli, Phys. Rev. B, Vol. 69, Pages 165201, (2004) Correlated growth in ultrathin pentacene films on silicon

oxide:Effect of deposition rate

Vol.5

204. S. Verlaak, S. Steudel, P. Heremans, D. Janssen and M.S. Deleuze, Phys. Rev. B Vol. 68, Pages 195409, (2003) Nucleation of organic semiconductors on inert substrates

2.191 Vol.5

205. F. Biscarini, R. Zamboni, P. Samori, P. Ostoja and C. Taliani, Phys. Rev. B, Vol. 52, Pages 14868, (2005) Growth of conjugated oligomer thin films studied by atomic

– force microscopy

2.192 Vol.5

206. M. Campione, A. Borghesi, M. Moret and A.J. Sassella, Mater. Chem., Vol. 13, Pages 1669, (2003) Growth dynamics of quaterthiophene thin films

2.193 Vol.5

207. T. Schwieger, J. App. Phys., Vol. 96, Pages 5596, (2003) Orientation and electronic properties of pentacene

molecules on SiO2 and GeS(0001) studied using x-ray

absorption spectroscopy

2.194 Vol.5

208. A. F. Stassen, R. W. de Boer, N. N. Iosad, and A. F. Morpurgo, Appl. Phys.Lett. Vol. 85, Pages 3899, (2004) Influnce of the gate dielectric on the mobility of

rubrenesingle-crystal field-effect transistors

2.195 Vol.5

209. J. Veres , S. D. Ogier, S. W. Leeming, D.C. Cupertino and S. Mohialdin Khaffaf, Adv. Fuc. Mater, Vol. 13, Pages 199,(2003)

2.196 NA

210.

J. Veres , S. D. Ogier and G. Lloyd, Chem. Mater, Vol. 16, Pages 4543, (2004)

2.197 NA

Page 15: Electronic Materials Library

211. N. Kirova and M.-N. Bussac, Phys. Rev. B, Vol. 68, Pages 235312, (2003) Self-trapping of electrons at the field-effect junction of a

molecular crystal

2.198 Vol.6

212. H. Houilli, J. Picon, L. Zuppiroli and M. N. Bussac, J. App. Phys, Vol.100, Pages 23702, (2006) Polarization effects in the channel of an organic field-

effect transistor

2.199 Vol.6

213. N. Hulea, S. Fratini, H. Xie, C.L. Mulder, N.N. Iossad, G. Rastelli, S. Ciuchi, A. F. Morpurgo, Nature Materials, Vol. 5, Pages 982, (2006)

2.200 NA

214. L. Chen, R. Ludeke, X. Cui, A. G. Schrott, C. R. Kagan and L. E. Brus, J. Phys., Chem. B, Vol. 109, Pages 1834, (2005) Electrostatic Field and Partial Fermi Level Pinning at the

Pentacene –SiO2 Interface

2.201 Vol.6

215. H. Yamane, Y. Yabuuchi, H. Fukagawa, S. Kera, K. K. Okudaira and N. Ueno, J. Appl. Phys, Vol. 99, P93705, (2006) Does the molecular orientation induce an electric dipole in

Cu –phthalocyanine hin films?

2.202 Vol.6

216. H. Fukagawa, H.Yamane, T.Kataoka, S.Kera, M.Nakamura, K.Kudo and N.Ueno, Phys. Rev. B, V73, Pages 245310, (2006) Origin of the highest occupied band position in pentacene

films from ultraviolet photoelectron spectroscopy: Hole

stabilization versus band dispersion

2.203 Vol.6

217. R. C. Haddon, X. Chi, M. E. Itkis, J. E. Anthony, D. L. Eaton, T. Siegrist, C. C. Mattheus and T. T. M. Palstra, J. Phys. Chem. B, Vol. 106, Pages 8288, (2002) Surface Electronic Excited State on Si(100): Structure,

Energetics, Lifetime, and role in Chemical Reaction

2.204 Vol.6

218. P Parisse, L Ottaviano1, B Delley and S Picozzi, J. Phys.: Condens. Matter, Vol. 19, Pages 106209, (2007) First- principles approach to the elctronic structure in the

pentacene thin film polymorf

2.205 Vol.6

219. A. Troisi A and G. Orlandi, J. Phys. Chem. B, Vol. 109, Pages 1849, (2005) Band Structure of the four Pentacene Polymorfs and Effect

on the Hole Mobility at Low Temperature

2.206 Vol.6

220. Doi K, Yoshida K and Nakano H J. Appl. Phys. Vol. 98, Pages 113709, (2005) Ab initio calculation of electron effective masses in solid

pentacene

2.207 Vol.6

221. M. Daraktchiev, A. Muhlenen, F. Nuesch, M. Schaer, M. Brinkmann, M. N. Bussac and L. Zuppiroli, New J. Phys, Vol. 133, Pages 1, (2005)

2.208 NA

222. J. Lee, K. Kim, J. H. Kim, S. Im and D. Y. Jung, Appl. Phys. Lett, Vol. 82, Pages 4169, (2003) Optimum channel thickness in pentacene-based thin film

transistors

2.209 Vol.6

Page 16: Electronic Materials Library

223. G. Horowitz, X. Peng, D. Fichou and F. Garnier, J. App. Phys, Vol. 67, Pages 528, (1990) The oligithiophene-based field-effect transsistor: how it

works and how to improve it.

2.210 Vol.6

224. E. L. Granstrom and C. D. Frisbie, J.Phys. Chem.B, Vol. 103, Pages 8842, (1999) Field Effect Conductance Measuremets on Thin Crystals of

Sexithiophene

2.211 Vol.6

225. M. Kiguchi, M. Nakayama, T. Shimada and K. Saiki, Phys. Rev. B, Vol. 71, Pages 0353321, (2005) Electric-field-induced charge injection or exaustion in

organic thin film transistor

2.212 Vol.6

226. R. Ruiz, A. Papadimitratos, A. C. Mayer and G.G.Malliaras, Adv. Mat., Vol. 17, Pages 1795, (2005)

2.213 NA

227. S.Jung and Z.Yao, Appl. Phys. Lett, Vol.86, Pages 83505, (2005) Organic field-effect transistors with single and double

Pentacene layers

2.214 Vol.6

228. R. Scroeder, L. A. Majewski and M. Grell, Appl. Phys. Lett, Vol. 83, Pages 3201, (2003 A study of the threshold voltage in pentacene organic field –

effect transistors

2.215 Vol.6

229. P. V. Pesavento, K. P. Puntambekar, C. D. Frisbie, J. C. McKeen, and P. P. Ruden, J. Appl. Phys. Vol. 99, Pages 094504, (2006) Film and contact resistance in pentacene thin-film

transistors: Dependence on film thickness, electrode

geometry, and correlation with hole mobility

2.216 Vol.6

230. J.B.Chang, V. Subramaniam, Appl. Phys. Lett. Vol. 88, Pages 233513, (2006) Effect of active layer thickness on bias stress effect in

pentacene thin film transistors

2.217 Vol.6

231. S. Hoshino, T. Kamata, and K. Yase, J. Appl. Phys. Vol. 92, Pages 6028, (2002) Effect of active layer thickness on device properties of

organic thin-film transistors based on Cu(11)

phthalocyanine

2.218 Vol.6

232. M. J. Deen, M. H. Kazemeini, Y. M. Haddara, J. Yu, G. Vamvounis, S. Holdcroft, and W. Woods, IEEE Trans. Electron Devices, Vol. 51, Pages 1892, (2004) Electrical Characterization of Polymer-Based FETs

Fabracated by Spin-Coating Poly(3-Alkylthiophene)

2.219 Vol.6

233. H. Jia, S. Gowrisanker, G. K. Pant, R. M. Wallace, and B. E. Gnade, J. Vac. Sci. Technol, Vol. 24, Pages 1228, (2006)

2.220 NA

234.

W. Kern and D. A. Pauotien, RCA Rev., Vol. 31, Pages 187, (1970)

3.1 NA

235. D. Turnbull and R.E. Cech, J. Appl. Phys. V21, P804, (1950) Microscopic Observation of the Solidification of Small

3.2 Vol.7

Page 17: Electronic Materials Library

Metal Droplets

236. S.R.Forrest, Chem. Rev., Vol. 97, Pages 1793, (1997) A. J. Salih, J. M. Marshall, Phil. Mag. Lett, Ultrathin Films Grown by Organic Molecular Beam

Deposition and Related Techniques

3.3 Vol.7

237.

A. J. Salih, J. M. Marshall, Phil. Mag. Lett, Vol. 75, Pages 169, (1997)

3.4 NA

238. C. D. Dimitrakopoulos, A. R. Brown, and A. Pomp, J. App. Phys, Vol. 80, Pages 2501, (1996) Molecular beam deposited thin films of pentacene for

organic field effect transistor aplication

3.5 Vol.8

239. F. Schreiber, Physica Status Solidi, Vol.201,Pages 1037, (2004) 3.6 NA

240. Y.Y.Lin, D.J.Gundlach, S.F.Nelson, T.N.Jackson, IEEE Trans. Elec. Devices, Vol. 44, Pages 1325, (1997) Pentacene-Based Organic Thin - Film Transistors

3.7 Vol.8

241. M. Shtein, P. Peumans, J. B. Benziger, S. R. Forrest, J. App. Phys., Vol. 96, Pages 4500, 2004 Direct mask-free patterning of molecular organic

semiconductors using organic vapor jet printing

3.8 Vol.8

242. ATLAS User's Manual: Device Simulation Software (SILVACO International, Santa Clara, 1998)

3.9 NA

243. S.M.Sze, Physics of Semiconductor Devices, New York, NY: Wiley

3.10 NA

244. M. Pope and C. E. Swenberg, Electronic Processes in Organic Crystals and Polymers ~Oxford University Press, New York, 1999

3.11 NA

245. E.A.Silinish E.A. and V.Čápek, Organic Molecular Crystals. Their Electronic States., New York, 1980

3.12 NA

246. E.A.Silinish, A. Klimkāns., S.Larsson, and V.Čápek, Chemical Physics, Vol. 198, Paes 311, (1995)

3.13 NA

247. L.Sebastian, G.Weiser and H.Bässler H, Chemical Physics, Vol. 61, Pages 125, (1981)

3.14 NA

248. N. Koch, J. Ghijsen, R.L. Johnson, J. Schwartz, J.-J. Pireaux, and A. Kahn, J. Phys. Chem. B, Vol. 106, Pages 4192, (2002) Physisorption- like Interaction at the Interfaces Formed by

Pentacene and Samarium

3.15 Vol.8

249. Schroeder P.G., France C.B., Park J.B. and Parkinson B.A., J. App. Phys., Vol. 91, Pages 3010, (2002)

3.16 NA

250. P. G. Schroeder, C. B. France, J. B. Park, and B. A. Parkinson, J. Phys. Chem. B, Vol. 107, Pages 2253, (2003) Orbital Alignment and Morphology of Pentacene Deposited

on Au(111) and SnS2 Studied Using Photoemission

Spectroscopy

3.17 Vol.8

251. N. J. Watkins and Y. Gao, Vacuum, J. Appl. Phys. Vol. 94, Pages 289, (2003) Vacuun level alignment of pentacene on LiF/aU

3.18 Vol.8

252. C. Baldacchini, C. Mariani, M. G. Betti, L. Gavioli and M. Fanetti , M. Sancrotti , Appl. Phys. Lett. Vol. 89, Pages 152119, (2006) Molecular gap and energy level diagram for pentacene

3.19 Vol.8

Page 18: Electronic Materials Library

absorbed on filled d-band metal surfaces

253. E.V. Tsiper and Z.G. Soos, Phys. Rev. B, V68, P085301, (2003) Electronic polarization in pentacene crystals and thin films

3.20 Vol.8

254. P. Petelenz, M. Slawik, K. Yokoi, and M.Z. Zgierski, J. Chem. Phys. Vol.105, Pages 4427, (1996) Theoretical calculation of the electroabsorbtion spectra

of polyacene crystals

3.21 Vol.8

255. M. L.Tiago, J.E. Northrup, and S.G. Louie, Phys. Rev. B, Vol. 67, Pages 115212, (2003) Ab initio calculation of the electronic and optical properties

of solid pectacene

3.22 Vol.8

256. K. Hummer and C. A. Draxl, Phys. Rev. B, Vol. 72, Pages 205205, (2005) Electronic properties of oligoacenes from first principles

3.23 Vol.8

257. G.Horowitz, Adv. Mater, Vol. 10, Pages 365, (1998) Organic Field-Effect Transistors

4.1 Vol.8

258. S.M. Sze, “Physics of semiconductor devices”,Wiley, New York (1981)

4.2 NA

259. P. V. Necliudov, M. S. Shur, D. J. Gundlach and T. N. Jackson, Solid State Electronics, Vol. 47, Pages 259, (2003) Coctact resistance extraction in pentacene thin film

transistors

4.3 Vol.8

260. H. Klauk, G. Schmid, W. Radlik, W. Weber, L. Zhou, C. D. Sheraw, J. A. Nichols and T. N. Jackson, Solid State Electronics, Vol. 47, Pages 297, (2003) Contact resistance in organic thin film transistors

4.4 Vol.8

261. D. J. Gundlach, L. Zhou, J. A. Nichols, T. N. Jackson, P. V. Necliudov, and M. S. Shur, J. Appl. Phys. Vol. 100, Pages 024509, (2006) An experimental study of contact effects in organic thin film

transistors

4.5 Vol.8

262.

G. B. Blanchet, C. R. Fincher, and M. Lefenfeld, J. A. Rogers, App. Phys. Lett, Vol. 84, Pages 296, (2004) Contact resistance in organic thin film transistors

4.6 Vol.8

263. H. Jia, G. K. Pant, E. K. Gross, R. M. Wallace, B. E. Gnade, Org. Electronics, Vol. 7, Pages 16, (2006) Gate induced leakage and drain current, offset in organic

thin film transistors

4.7 Vol.9

264. I.de R.W.Boer, N.N.Iosad, A.F.Stassen, T.M. Klapwijk, A.F. Morpurgo, Appl. Phys. Lett, Vol. 86, Pages 032103, (2005) Influence of the gate leakage current on the stability of

organic single-crystal field-effect transistors

4.8 Vol.9

265. K.W.Shih, R.Rios, P.Packan, K.Mistry, T.Abbott, IEEE Electron. Device Meeting, IEDM, 13.3.1, (2001) A general Partition Scheme for Gate Leakage Current

Suitable for MOSFET Compact Models

4.9 Vol.9

266. P.M. Zeitzoff, C. D. Young, G. A. Brown, and Y. Kim, IEEE Elec. Dev. Lett, Vol. 24, Pages 275, (2003) Correcting Effective Mobility Measurements for the

Presence of Significant Gate Leakage Current

4.10 Vol.9

Page 19: Electronic Materials Library

267. K.Sheshadri, C.D.Frisbie, App. Phys. Lett., V78, P993, (2001) Potentiometry of an operating organic semiconductor field-

effect transistor

4.11 Vol.9

268. G. Guillaud, J. Simon, and J. P. Germain, Coord. Chem. Rev.Vol. 178, Pages 1433, (1998)

4.12 NA

269 S. Hoshino, M. Yoshida, S. Uemura, T. Kodzasa, N. Takada, T. Kamata, and K. Yase, J. Appl. Phys.Vol. 95, Pages 5088,(2004) Influence of moisture on device characteristics of poly

Thiophene-based field-effect transistors

4.13

270. M. S. A. Abdou, F. P. Orfino, Y. Son, and S. Holdcroft, J. Am. Chem. Soc., Vol.119, Pages 4518, (1997) Interaction of Oxygen with Conjugated Polymers: Charge

Transfer Complex Formation with

Poly(3-Alkylthiophenes)

4.14 Vol.9

271. J.D. Wright, Molecular Crystals, 2nd ed. (Cambridge Unviersity Press, Cambridge, UK, 1995

4.15 NA

272. G.Horowitz, F.Dellofre, F.Garnier, R.Hajlaoui, M.Hmyene, A.Yassar, Synthetic Metals, Vol. 54, Pages 435, (1993) All-organic field-effect transistors made of

π-connjugated oligomers and polymeric insulators

4.16 Vol.9

273. F.Garnier, Pure & Applied Chem, Vol. 68, Pages 1455, (1996) Thin film transistors based on molecular semiconductors

4.17 Vol.9

274. A.R.Brown, C.P.Jarrett., D.M.de Leeuw and M. Matters, Synthetic Metals, Vol. 88, Pages 37, (1997) Field-effect transistors made from solution-processed

Organic semiconductors

4.18 Vol.9

275. G.Horowitz, Adv. Mater, Vol. 8, Pages 177, (1996) 4.19 NA

276. A. Bolognesi, M.Berliocchi, M.Manenti, A.D.Carlo, K.Lmimouni and C.Dufour, IEEE Trans. Elec. Dev., Vol. 51, Pages 1997, (2004)

4.20 NA

277. S. Scheinert, G. Paasch , M. Schrödner, H.-K. Roth, and S. Sensfuß , Th. Doll, J. App. Phys, Vol. 92, Pages 330, (2002) Subthreshold characteristics of field-effect transistors based

on poly(3-dodecylthiophene) and an organic insulator

4.21 Vol.9

278. J. Kanicki and S. Martin, “Printed Organic and Molecular Electronics,” eds.: D.R. Gamota, P. Brazis, K. Kalyanasundaram and J. Zhang, Kluwer Academic Publishers: Boston, MA, 2004 (ISBN 1 4020 7707 6)

4.22 Vol.9

279. A. Rolland, J. Richard, J.P. Kleider, and D. Mencaraglia, J. Electrochem.Soc., Vol. 149, Pages 3679, (1993) Electrical Properties of Amophous Silicon Transistors and

MIS-Device: Comparative Study of TOP Nitride

And Bottom Nitride Configuration

4.23 Vol.9

280. P.B.Shea, J.Kanicki and N.Ono, J. App. Phys, Vol. 98, Pages 14503, (2005) Field-effect mobility of polycrystalline tetrabenzoporphyrin

thin-film transistors

4.24 Vol.9

281. P.B.Shea, J.Kanicki, L.R.Pattison, M.Kamano, H.Yamada and N.Ono, J. App. Phys, Vol. 98, Pages 14503, (2005) Solution—Processed nickel tetrabenzoporphyrin thin- film

4.25 Vol.9

Page 20: Electronic Materials Library

transistors

282. P. G. Schroeder, C. B. France, J. B. Park, and B. A. Parkinson, J. Phys. Chem. B, Vol. 07, Pages 2253, (2003) Orbital Alignment and Morphology of Pentacene Deposited

on Au(111) and SnS2 studied using Photoemission

Spectroscopy

5.1 Vol.9

283.

N. Koch, A. Kahn, J. Ghijsen, J. J. Pireaux, J. Schwartz, R. L. Johnson, and A. Elschner, Appl. Phys. Lett., V82, P70, (2003)

Conjugated organic molecules on metal versus polymer

electrodes:Demonstration of a key energy level alignment

mechanism

5.2 Vol.9

284. Y. Shen, A.R. Hosseini, M.H. Wong and G.G. Malliaras, Chem. Phys. Chem. V5, P16, (2004)

How to make Ohmic Contact to Organic Semiconductors

5.3 Vol.10

285. P. G. Schroeder, C. B. France, J. B. Park, and B. A. Parkinson, J. Appl. Phys. Vol. 91, Pages 3010, (2002) Energy level alignment and two-dimensional structure of

pentacene on Au(111) surfaces

5.4 Vol.10

286. H. Ishii and K. Seki, IEEE Trans. Electron Dev., Vol. 44, Pages 1295, (1997)

Energy level alignment at Organic/Metal Interfaces studied

by UV Phptoemission:Breakdown of traditional

Assumptionof a Common Vacuum Level at the Interface

5.5 Vol.10

287. I.G. Hill, A. Rajagopal and A. Kahn, Appl. Phys. Lett. Vol. 73, Pages 662, (1998) Molecular level alignment at organic semiconductor-metal

interfaces

5.6 Vol.10

288. C.D.Dimitrakopoulos and P.R.L.Malenfant, Adv. Mater, Vol. 14, Pages 19, (2002

5.7 NA

289. N. Koch, A.Elschner, J. Schwartz and A. Kahn, Appl. Phys. Lett., Vol. 82, Pages 2281, (2003)

Organic molecular films on gold versus conducting

polymer:Influence of injection barrier height and

morphology on current-voltage characteristics

5.8 Vol.10

290. W.R. Salaneck, K. Seki, A. Kahn and J.J. Pireaux, Editors, Marcel Dekker, New York (2002).

5.9 NA

291. T.Li, P.P.Ruden, I.H.Campbell and D.L.Smith, J.App. Phys, Vol. 93, Pages 4017, (2003)

Investigation of bottom-contact organic field-effect

transistors by two-dimensional device modeling

5.10 Vol.10

292. G. Beernink, T. Strunskus, G. Witte, and Ch. Wöll, Appl. Phys. Lett. Vol. 85, Pages 398, (2004)

5.11 NA

293. J. H. Kang and X. Y. Zhu, Appl. Phys. Lett. Vol. 82, Pages 3248, (2003)

5.12 Vol.10

Page 21: Electronic Materials Library

Pi-stacked pentacene thin films grown on Au(111)

294. I. Kymissis, C. D. Dimitrakopoulos, and S. Purushothaman, IEEE Trans. On Elec. Dev., Vol. 48, Pages 1060, (2001)

High-Performance Bottom Electrode Organic thin film

transistors

5.13 Vol.10

295. K. P. Puntambekar, P. V. Pesavento, and C. D. Frisbie, Appl. Phys. Lett, Vol. 83, Pages 5539, (2003) Surface potential profiling and contact resistance

measurements on operating pentacene thin film transistors

by Kelvin probe force microscopy

5.14 Vol.10

296. K. S. Lee, T. J. Smith, K. C. Dickey, J. E. Yoo, K. J. Stevenson, andY-Lin Loo, Adv. Funct.Mater., Vol. 16, Pages 2409, (2006) High-Resolution Characterization of Pentacene/Polyaniline

interfaces in thin film transistors**

5.15 Vol.10

297. C. Bock, D. V. Pham, and U. Kunze, D. Käfer, G. Witte, and Ch. Wöll, J. App. Phys, Vol. 100, Pages 114517, (2006) Improved morphology and charge carrier injection in

pentacene field-effect transistors with thio-treated

electrodes

5.16 Vol.10

298. D. J. Gundlach, L. L. Jia, and T. N. Jackson, IEEE Electron Device Lett., Vol. 22, Pages 571, (2001)

5.17 NA

299. A. Bolognesi, M. Berliocchi, M. Manenti, A. Di Carlo, P. Lugli, K. Lmimouni, and C. Dufour, IEEE Trans. Electron Devices, Vol. 51, Pages 1997, (2004)

Effect of Grain Boundaries, Field-Dependent Mobility,

and Interface Trap States on the Electrical Characteristics

of Pentacene TFT

5.18 Vol.10

300. A. F. Stassen, R. W. de Boer, N. N. Iosad, and A. F. Morpurgo, Appl. Phys.Lett. Vol. 85, Pages 3899, (2004) Influence of the gate dielectric on the mobility of rubrene

single-crystal field-effect transistors

6.1 Vol.10

301. G. Horowitz, M. E. Hajlaoui and R. Hajlaoui, J. Appl. Phys. Vol. 87, Pages 4456, (2000) Temperature and gate voltage dependence of hole mobility

in polycrystalline oligothiophene thin film transistors

6.2 Vol.10

302. D. V. Lang, X. Chi, T. Siegrist, A. M. Sergent, and A. P.Ramirez, Phys. Rev. Lett. Vol. 93, Pages 086802, (2004) Amorphous like Density of Gap States in single-crystal

Pentacene

6.3 Vol.10

303. S. Verlaak, C. Rolin, and P. Heremans, J. Phys. Chem. B, Vol.111, Pages 139, (2007) Microscopic Description of Elementary Growth Processes

and Classification of Structural Defects in Pentacene Thin

Films

6.4 Vol.10

304. S. Steudel, S. De Vusser, S. De Jonge, D. Janssen, S. Verlaak, J. Genoe, and P. Heremans, Appl. Phys. Lett., V85, P4400, (2004)

6.5 NA

305.

N. Hulea, S. Fratini, H. Xie, C.L. Mulder, N.N. Iossad, G. Rastelli, S. Ciuchi, A. F. Morpurgo, Nature Materials, Vol. 5,

6.6 Vol.10

Page 22: Electronic Materials Library

► Pages 982, (2006) Tunable Frohlich Polarons in Organic single-crystal

transistors

306. G. Horowitz and P. Delannoy, J. Appl. Phys, V70, P469, (1991) An analytical model for organic-based thin film transistors

6.7 Vol.11

307. F. Dinelli, M. Murgia, P. Levy, M. Cavallini, F. Biscarini, D. de Leeuw, Phys. Rev. Lett, Vol. 92, Pages 116802, (2004)

6.8 NA

308. G. Horowitz, R. Hajlaoui, H. Bouchriha, R. Bourguiga and M. Hajlaoui, Adv. Mat, Vol... (1998),

6.9 NA

309. K. Puntambekar, J.Dong, G. Haugstad and C.D. Frisbie, Adv. Funct. Mat, Vol. 16, Pages 879, (2006) Structural and Electrostatic Complexity at a

Pentacene/Insulator interface**

6.10 Vol.11

310. S. Jung and Z.Yao, Appl. Phys. Lett, Vol. 86, P083505, (2005) 6.11 NA

311. N. Kirova and M.-N. Bussac, Phys. Rev. B, Vol. 68, Pages 235312, (2003) Self-trapping of electrons at the field-effect junction of a

molecular crystal

6.12 Vol.11

312. T. Miyazaki, K. Kobayashi, K. Ishida, S. Hotta, T. Horiuchi, K. Matsushige, H. Yamada, J.App.Phys.V97, Pages 124503,(2005) Increase in carrier mobility of organic ultrathin-film

transistor with increasing molecular layers investigated by

Kelvin probe force microscopy

6.13 Vol.11

313. H.Houilli, J.D.Picon, L.Zuppiroli and M..Bussac, J.App. Phys, Vol.100, Pages 23702, (2006) Polarization effects in the channel of an organic field-effect

transistor

6.14 Vol.11

314. H.G. O. Sandberg, G.L. Frey, M. N. Shkunov, H. Sirringhaus, and R. H. Friend, Langmuir, Vol. 18, Pages 101706, (2002) Ultrathin Regioregular Poly(3-hexyl thiophene) Field-Effect

Transistors

6.15 Vol.11

315. J. Veres , S. D. Ogier, S. W. Leeming, D.C. Cupertino and S. Mohialdin Khaffaf, Adv. Fuc.Mater, Vol. 13,Pages 199,(2003) Low-Insulators as the Choice of Dielectric in Organic Field-

Effect Transistorss

6.16 Vol.11

316. S.E.Fritz, S.M.Martin, C.D. Frisbie, M.D.Ward and M.F.Toney, J. Am. Chem. Soc, Vol. 126, Pages 4084, (2004) Structural Characterization of a Pentacene Monolayer on

an Amorphous SiO2 Substrate with Grazing Incidence –ray

Diffraction

6.17 Vol.11

317. R. Ruiz, D. Choudhary, B. Nickel, T. Toccoli, K. C. Chang, A.C. Mayer, P. Clancy, J. M. Blakely, R. L. Headrick, S. Iannotta and G.G. Malliaras, Chem. Mater. V16, P4497, (2004) Pentacene Thin Film Growth

6.18 Vol.11

318. H. Fukagawa, H.Yamane, T.Kataoka, S.Kera, M.Nakamura, K.Kudo and N.Ueno, Phys. Rev. B, Vol.73, Pages 245310, (2006)

6.19 NA

319. H.Yamane, Y. Yabuuchi, H. Fukagawa, S.Kera, K.K. Okudaira and N. Ueno, J.Appl. Phys, Vol. 99, Pages 93705, (2006)

6.20 Vol.11

Page 23: Electronic Materials Library

Does the molecular orientation induce an electric dipole in

Cu-phthalocyanine thin films?

320. R. Ruiz, A. Papadimitratos, A.C.Mayer and G.G.Malliaras, Adv Mat, Vol. 17, Pages 1795, (2005)

6.21 NA

321. M. Kiguchi, M. Nakayama, T. Shimada and K. Saiki, Phys. Rev. B, Vol. 71, Pages 0353321, (2005) Electric-field-induced charge injection or exhaustion in

organic thin film transistor

6.22 Vol.11

322. C.C. Mattheus, G.A. de Wijs, R. de Groot and T.T.M. Palstra, J. Am. Chem. Soc. Vol. 125, Pages 6323, (2002) Modeling the Polymorphism of Pentacene

6.23 Vol.11

323. T. Kakudate, N. Yoshiimoto, Y. Saito, App. Phys. Lett., Vol. 90, Pages 081903, (2007)

6.24 NA

324. L. F. Drummy and D. C. Martin, Adv. Mater. Vol. 17, Pages 903, (2005) Thickness-Driven Orthorhombic to Triclinic Phase

Transformation in Pentacene Thin Films**

6.25 Vol.11

325. H. J. Juepner, K.W. Brzezinka, A. Lau, Thin Solid Films, Vol. 315, Pages 273, (1998)

6.26 NA

326. I. P. M. Bouchoms, W. A. Schoonveld, J. Vrijmoeth, T.M. Klapwijk, Synth. Met, Vol. 104, Pages 175, (1999)

6.27 NA

327. G. Horowitz and M. E. Hajlaoui, Synth. Met., Vol. 122, Pages 185, (2001) Grain size dependent mobility in polycrystalline organic

field-effect transistors

6.28 Vol.11

328. J.B.Chang, V. Subramaniam, Appl. Phys. Lett. Vol. 88, Pages 233513, (2006)

6.29 NA

329. T. Minari, T. Nemoto, and S. Isoda, J. Appl. Phys., Vol. 96, Pages. 769, (2004) Fabrication and characterization of single-grain organic

field-effect transistor of pentacene

6.30 Vol.11

230. A. B. Chwang and C. D. Frisbie, J. App. Phys., Vol. 90, Pages 1342, (2001) Temperature and gate voltage dependent transport across a

single organic semiconductor grain boundary

6.31 Vol.11

331. A. Bolognesi, M. Berliocchi, M. Manenti, A. D. Carlo, P. Lugli, K. Lmimouni, C. Dufour, IEEE Trans. On Electron Devices, Vol. 51, Pages 1997, (2004)

6.33 NA

332.

T. W. Kelley and C. D. Frisbie, J. Phys. Chem. B, Vol. 105, Pages 4538, (2001) Gate Voltage Resistance of a Organic Semiconductor Grain

Boundary

6.33 Vol.11

Page 24: Electronic Materials Library

S. No Details of the paper including titles Volume

1. By Kang-Jun Baeg, Yong-Young Noh, Jieun, Ghim, Seok-Ju Kang, Hyemi Lee,and Dong-Yu Kim, Adv. Mater (2006),Vol. 18, Pages 3179-3183 Organic Non-Volatile Memory Based on Pentacene Field –

Effect Transistors Using a Polymeric Gate Electret**

Vol. 12

2. Liwei Chen, R. Ludeke, Xiaodong Cui, Alejandro G. Schrott, Cherie R. Kagan, and Louis E. Brus, J.Phys.Chem.B (2005),Vol. 109, Pages 1834-1838, Electrostatic Field and Partial Fermi Level Pinning at the

Pentacene – SiO2 Interface

Vol. 12

3. G.E. Thayer, J.T. Sadowski, F.Meyer Z.U. Heringdorf, T. Sakurai, and R.M. Tromp, PRL(2005),Vol.95, Page 256106-1-4 Role of Surface Electronic Structure in Thin Film

Molecular Orderng

Vol. 12

4. Jiyoul Lee, Kibum Kim, Jae Hoon Kim,and Seongil lm, Applied Phys.Let. (2003), Vol. 82, Pages 4169-71 Optimum channel thickness in pentacene-based thin film

transistors

Vol. 12

5. Z.Q. Li, G.M. Wang, N. Sai, D.Moses, M.C. Martin, M.Di Ventra, A.J.Heeger, and D.N. Basov., Nano Letters, (2006),Vol. 6, Pages 224-228 Infrared Imaging of the Nanometer-Thick Accumulation

Layer in Organic Field - Effect Transistors

Vol. 12

6. Raoul Schroeder, Leszek A Majewski, and Martin Grell, Applied Phys. Let. (2004), Vol. 84, Pages 1004-6, Improving organic transistor performance with Schottky

contacts

Vol. 12

7. Raoul Schroeder, Leszek A Majewski, and Martin Grell, Applied Physics Letters (2003), Vol. 83, Pages 3201-3203 A study of the threshold voltage in pentacene organic field -

effect transistors

Vol. 12

8. A.Dodabalapur, L.Torsi, H.E. Katz, Science, (1995),Vol. 268, Pages 270-271 Organic Transistors:Two-Dimensional Transport and

Improved Electrical Characteristicks

Vol. 12

9. By Ricardo Ruiz, Alexios Papadimitratos, Alex C. Mayer,and George G. Malliaras, Adv. Mater, (2005), Vol. 17, P1795-1798 Thickness Dependence of Mobility in Pentacene Thin - Film

Transistors

Vol. 12

10. Manabu Kiguchi,Manabu Nakayama, Kohei Fujiwara, Keiji Ueno, T.Shimada and K. Saiki, Xiv:cond-mat/0310756v1(2003) Accumulation and Depletion layer thickness in organic

field-effect transistors

Vol. 12

11. E.F. Valeev, V.Coropceanu, D.A. da Sillva Filho, S. Slaman, and Jean-Luc Bredas, J. AM. CHEM. SOC. (2006),Vol. 128, Pages 9882-9886 Effect of Electronic Polarization on Charge-Transport

Parameters in Molecular Organic Semiconductors

Vol. 12

Page 25: Electronic Materials Library

12. L.Burgi,R.H. Friend, and H. Sirrinhaus, Applied Physics Letter, (2003),V82, P1482-1484 Formation of the accumulation layer in polymer field-effect

transistros

Vol. 12

13. J. Veres, S. Ogier, and G. Lloyd, Chem. Mater. (2004),Vol.16 Pages 4543-4555 Gate Insulators in Organic Field-Effect Transistors

Vol. 12

14. H. Yang,T.J. Shin Mang-Mang Ling, K.Cho, C.Y. Ryu and Z.Bao, J. Am. Chem. Society.(2005) Vol. 127, Pages 11542/2 Conducting AFM and 2D GIXD Studies on Pentacene Thin

Films

Vol. 12

15. S.Cherian, C.Donley, D. Mathine, L.LaRussa, W.Xia, N. Armstrong, Journal. Appied Physics (2004), Vol. 96, P5638/6 Effects of field dependent mobility and contact barriers on

Liquid crystalline phthalocyanine organic transistors

Vol. 12

16. E.J. Meijer, G.H. Gelinck, E.V.Veenendaal, B-H. Huisman, and D.M. de Leeuw, T.M. Klapwijk, Applied Phys. Letter, (2003) Vol. 82, Pages 4776/3 Scaling behavior and parasitic series resistance in

disordered organic field-effect transistors

Vol. 12

17. B.Nickel, R.Barabash, R.Ruiz, N.Koch, L.C. Feldman, R.F.Haglund, and G.Scoles,Phys. Re.B, V70, P125401/7 (2004) Dislocation arrangements in pentacene thin films

Vol. 12

18. B.Stadlober, U. Haas, H.Maresch and A Haase, Phys, Review B (2006), Vol. 74, Pages 165302/9 Growth model of pentacene on inorganic and organic

dielectrics based on scaling and rate-equation theory

Vol. 12

19. R.Ruiz, B.Nickel, N. Koch, L.C. Feldman, R.F.Haglund G.Scoles, and A.Kahn, Phys, Review B,(2003) V67, P125406/7 Pentacene ultrathin film formation on reduced and oxidized

Si surfaces

Vol. 12

20. J.E. Northrup, M.L.Tiago and S.G. Louie, Phys, Review B (2002), Vol. 66, Pages 121404/4 Surface energetics and growth of pentacene

Vol. 12

21. R.Ruiz, B.Nickel, N. Koch, L.C. Feldman, R.F.Haglund, Jr., G.Scoles, A.Kahn, F.Fereydoon and G.Scoles, Physics Review Letter, (2003) Vol. 91, Pages 136102/4 Dynamic Scaling, Island Size Distribution, and Morphology

In the Aggregation Regime of Submonolayer Pentacene

Thin Films

Vol. 12

22. S. Zorba, Y.Shapir and Y.Gao, Physics Review B,(2006) Vol. 74 ,Pages 245410/5 Fractal- mound growth of pentacene thin films

Vol. 12

23. H. Fukagawa, H.Yamane, T.Kataoka, S.Kera, M.Nakamura, K.Kudo and N.Ueno, Phys, Review B,(2006) Vol.73, Pages 245310/5 Origin of the highest occupied band position in pentacene

films from ultraviolet photoelectron spectroscopy:Hole

stabilization versus band dispersion

Vol. 12

24. N.Tesslerand Y.Roichman, Appl.Phys.Let.(2001) V79, P2987/3 Vol. 12

Page 26: Electronic Materials Library

Two-Dimensional simulation of polymer field-effect

transistor

25. A.Troisi and G. Orlandi,J. Phys.Chem.B (2004) A to H Band Structure of the Four Pentacene Polymorphs and

Effect on the Hole Mobility at Low Temperature

Vol. 12

26. S.Scheinert, G.Paasch, M. Schrodner, H.-K. Roth and S. Sensful, Journal Applied Physics, (2002), Vol. 92, Pages 330/8 Subthreshold characteristics of field effect transistors based

on poly(3-dodecylthiophene) and an organic insulator

Vol. 12

27. H.Yamane, Y.Yabuuchi and H. Fukagawa, S.Kera, K.K. Okudaira, and N. Ueno, Jour App.Phys.(2006), V99, P093705/5 Does the molecular orientation induce an electric dipole in

Cu-phthalcyanine thin films?

Vol. 12

28. J.H.Kang, D.da Silva Filho,and J.-C. Bredas, X.-Y. Zhu, Applied Physics Letters, (2005) Vol. 86, Pages 152115/3 Shallow trap states in pentacene thin films from molecular

sliding

Vol. 12

29. M.Daraktchiev, A.von Muhlenen, F.Nuesch, M. Schaer, M. Brinkmann, Marie-Noesch Bussac and L. Zuppiroli, New Jour. of Phys, (2005) Ultrathin organic transistors on oxide surfaces

Vol. 12

30. S. Jain, IEE PROCEEDINGS, Vol.135, Pages162-164 Measurement of threshold voltage and channel length of

submricon MOSFETs

Vol. 12

31. J.Zaumseil, K.W. Baldwin, and J.A. Rogers, Journal Applied Physics, (2003), Vol. 93, Pages 6117/8 Contact resistance in organic transistors that use source and

drain electrodes formed by soft contact lamination

Vol. 12

32. S.Ogawa, T.Naijo, Y.Kimura, H.Ishil and M. Niwano, Applied Physics Letters, (2005), Vol. 86, Pages 252104/3, Photoinduced doping effect of pentacene field effect

transistor in oxygen atmosphere studied by displacement

current measurement

Vol. 12

33. S. Zorba, Y.Shapir and Y. Gao,Phys. Rev.B (2006),Vol.74, Pages 245410/5 Fractal-mound growth of pentacene thin films

Vol. 12

34. J.E.Northrup,and M.L. Chabinyc, Physics Review B,(2003), Vol. 68, Pages 041202/4 Gap states in organic semiconductors: Hydrogen - and

Oxygen – induced states in pentacene

Vol. 12

35. G.Horowitz, R. Hajlaoui, D. Fichou and A. El Kassmi, Journal of App.Phys.(2006), Vol. 85, Pages 3202/5 Gate voltage dependent mobility of oligothiophene field

effect transistors

Vol. 12

36. ►

S.D.Wang, X.Dong,C.S. Lee and S.T. Lee*,J.Phys. Chem., B (2005), Vol. 109, Pages 9892-9896 Molecular Orientation and Film Morphology of Pentacene

on Native Silicon Oxide Surface

Vol. 12

37. Y.Y. Lin, Student Member, IEEE, D.J.Gundluch, S.F.Nelson and T.N.Jackson, Member,IEEE, IEEE Transactions on

Vol. 13

Page 27: Electronic Materials Library

Electron Devices,(1997), Vol. 44, Pages 1325-1331 Pentacene – Based Organic Thin – Film Transistors

38. D.J. Gundluch, Y.Y. Lin, T.N.Jackson, S.F.Nelson and D.G. Schlom, IEEE Electron Device Letters, (1997) Vol. 18, P87-89 Pentacene – Based Organic Thin – Film Transistors –

Molecular Ordering and Mobility

Vol. 13

39. H.Klauk, D.J. Gundluch, Mathias Bonse, C.-C. Kuo and T.N.Jackson, Applied Phys. Let.,(2000) V76, Pages 1692/3 A reduced complexity process for organic thin film

transistors

Vol. 13

40. H.Klauk, Student Member, IEEE, D.J. Gundluch, Student Member, IEEE, T.N.Jackson, Members, IEEE, IEEE Electron Device Letters, (1999), Vol. 20, Pages 289-291 Fast Organic Thin – Film Transistor Circuits

Vol. 13

41. S.F.Nelson, Y.Y. Lin, D.J. Gundluch, and T.N.Jackson, Applied Physics Letters,(1998), Vol. 72, Pages 1854/3 Temperature-independent transport in high-mobility

pentacene transistors

Vol. 13

42. C.D. Sheraw, L.Zhou, J.R.Haung, D.J. Gundluch, and T.N.Jackson, M.G. Kane, I.G. Hill, M.S.Hammond, J.Campi And B.K.Greening, J.Franci and J. West, Applied Physics Letters, (2002) Vol. 80, Pages 1088/3 Organic thin film transistor-driven polymer-dispersed

liquid cystal displays on flexible polymeric substrates

Vol. 13

43. D.J. Gundluch, J.A. Nichols, L.Zhou and T.N.Jackson, Applied Physics Letters,(2002) Vol.80, Pages 2925/3 Thin filn transistors based on well-ordered thermally

evaporated naphthacene films

Vol. 13

44. P.V.Necliudov, M.S. Shur, D.J. Gundluch, and T.N.Jackson, Solid - State Electronics, (2003) Vol. 47, Pages 259-262 Contact resistance extraction in pentacene thin film

transistors

Vol. 13

45. H.Klauk, G.Schmid, W.Radik, W. Weber, L.Zhou, C.D. Sheraw, J.A. Nichols, and T.N.Jackson, Solid - State Electronics, (2003) Vol.47, Pages 297-301 Contact resistance in organic thin film transistor

Vol. 13

46. P.V.Necliudov, S.L. Rumyantsev, and M.S. Shur, D.J. Gundluch, and T.N.Jackson, Journal of Applied Physics (2000), Vol. 88, Pages 5395/5 1/f noise in pentacene organic thin film transistors

Vol. 13

47. D.J. Gundluch, Member, IEEE, LiLi Jia, and T.N.Jackson Member, IEEE, IEEE Electron Device Letters, (2001), Vol. 22, Pages 571-573 Pentacene TFT with Improved Linear Region

Characteristics using Chemically Modified Source and

Drain Electrodes

Vol. 13

48. M.G. Kane, J.Campi, M.S.Hammond, F.P. Cuomo, B.Greening, C.D. Sheraw, J.A. Nichols, D.J. Gundluch, J.R.Haung, C.-C. Kuo, L. Jia, H.Klauk, and T.N.Jackson, IEEE Electron Device Letters, (2000), Vol. 21, Pages 534-536

Vol. 13

Page 28: Electronic Materials Library

Analog and Digital Circuits using Organic Thin – Film

Transistors on Polyester Substrates 49. H.Klauk, Student Member, IEEE, D.J. Gundluch, Student

Member, IEEE, J.A. Nichols, and T.N.Jackson, Member, IEEE, IEEE Electron Device Letters,(1990), Vol. 46, Pages 1258-1263 Pentacene Organic Thin - Filn Transistors for Circuit and

Display Applications

Vol. 13

50. By C.D. Dimitrakopoulos and P.R.L.Malenfant, Adv. Mater.(2002), Vol. 14, Pages 99-117 Organic Thin Film Transistors for Large Area Electronics

Vol. 13

51. H.Sirringhaus and R.H. Friend, X.C.Li, S.C. Moratti, and A.B. Holmes, N.Feeder,Appl.Phys.Lett.(1997) Vol. 71, Pages 3871/3 Bis(dithienothiophene) organic field-effect transistors with a

high ON/OFF ratio

Vol. 13

52. H.Sirringhaus, N,Tessler, R.H. Friend, Syn.Met. (1999) Vol. 102, Pages 857-860 Integrated, high-mobility polymer field-effect

transistors driving polymer light emitting diodes

Vol. 13

53. K.Kudo,D.X. Wang, M.Lizuka, S.Kuniyoshi, K. Tanaka, Syn.Met.(2000) Vol. 111-112, Pages 11- 14 Organic static induction transistor for display devices

Vol. 13

54. S.K. Park, Y.H. Kim, J.I. Han, D.G. Moon, W.K. Kim, M.G. Kwak, Synthetic Metals (2003) Vol. 139, Pages 377-384 Electrical characteristics of poly (3-hexylthiophene) thin

film transistors printed and spin-coated on plastic

substrates

Vol. 13

55. H.E. Katz, W.Li, A.J. Lovinger, J. Laquindanum, Synthetic Metals (1999), Vol. 102, Pages 897-899 Solution-phase deposition of oligomeric TFT

semiconductors

Vol. 13

56. T.Suga, M.Lizuka, S.Kuniyoshi, K.Kudo, K. Tanaka, Synthetic Metals (1999), Vol. 102, Pages 1050/1051 Determination of effects of purity and atmospheric gases on

electrical properties of perylene thin films by field effect

measurement

Vol. 13

57. W.Geens, D. Tsamouras, J.Poortmans, G, Hadziioannou, Synthetic Metals (2001), Vol. 122, Pages 191-194 Field-effect mobilities in spin-cast and vacuum-deposited

PPV-Type pentamers

Vol. 13

58. D.J. Gundluch, Y.Y. Lin and T.N.Jackson, D.G. Schlom,Appl. Physics Letters (1997), Vol. 71, Pages 3853/3 Oligophenyl-based organic thin film transistors

Vol. 13

59. M.Yoshida, S. Uemura, T. Kodzasa, H. Ushijima and T.N.Jackson, Synthetic Metals (2003), Vol. 137, Pages 893-894 High Performance Organic FET with Double-

Semiconductor Layers

Vol. 13

60. T.Y. Choi, H.S. Kang, D.H. Park, J.M. Koo, J.K. Lee, S.D. Ahn, J.Joo, Synthetic Metals (2003), Vol. 137, Pages 929-930 Trap Distribution and Field Effect Transistor(FET) of

Perylene by Organic Molecular Beam Deposition(OMBD)s

Vol. 13

Page 29: Electronic Materials Library

61. P. Checcoli, G. Conte, S. Salvatori, R. Paolesse, A.Bolognesi, M.Berliocchi, F. Brunetti, A.D. Amico, A.Di Carlo, P.Lugli, Synthetic Metals (2003), Vol. 138, Pages 261-266 Tetra-phenyl porphyrin based thin film transistors

Vol. 13

62. S.K. Park, Y.H. Kim, J.I. Han, D.G. Moon, W.K. Kim, M.G. Kwak, Synthetic Metals (2003), Vol. 139, Pages 377-384 Electrical characteristics of poly(3-hexylthiophene) thin film

transistor printed and spin-coated on plastic substrates

Vol. 13

63. H. Sirringhaus, P.J. Brown, R.H. Friend, M.M. Nielsen, K.Bechgaard, B.M.W. Langeweld-Voss, A.H.J. Spiering, R.A.J. Janssen, E.W Meijer, Syn.Met.(2000), Vol.111-112, P129-132 Microstructure-mobility correlation in self-organised,

conjugated polymer field effect transistors

Vol. 13

64. S. Scheinert, G.Paasch, and T. Lindner, Syn.Met.(2003), Vol. 137, Pages 1451-1452 Relevance of organic field effect transistor models:

Simulation vs experiment

Vol. 13

65. S. Scheinert, G.Paasch, T.Doll, Syn.Met.(2003), Vol. 139, Pages 233-237 The influence of bulk traps on the subthreshold

characteristics of an organic field effect transistor

Vol. 13

66. G.Paasch, A. Nesterov S. Scheinert, Syn.Met.(2003), Vol. 139, Pages 425-432 Simulatin of organic light emitting diodes: influence of

charges localized near the electrodes

Vol. 13

67. A.Bolognesi, A.Di Carlo, P.Lugli, G. Conte, Syn.Met. (2003), Vol. 138, Pages95-100 Large drift-diffusion and Monte Carlo modeling of organic

semiconductor devices

Vol. 13

68. Gilles Horowitz, Syn.Met.(2003), Vol. 138, Pages 101-105 Tunnel current in organic field-effect transistors

Vol. 13

69. Gelu and C. Legrand,O.Tharaud and A. Chapoton, D. Remiens, G. Horowitz, APPL. Phys. Lett. (2001) Vol. 79, Pages 669/3 Low driving voltages and memory effect in organic thin-film

transistors with a ferroelectric gate insulator

Vol. 13

70. C.Videlot, J.Ackermann, A. EI Kassmi, P.Raynal, Thin Solid Films (2002), Vol. 403-404, Pages 380-383 Morphology and structure of organic thin films for solar

cells and transistors applications

Vol. 13

71. N. Tessler, D.J. Pinner, P.K.H. Ho,Optical Materials (2001) V17, P155-160 Optoelectronic devices based on hybrid organic-inorganic

structures

Vol. 13

72. ►

G. Wang, J. Swensen, D. Moses and J. Heeger, Journal of Applied Physics, (2003), Vol. 92, Pages 6137/5 Increased mobility from regioregular poly(3-

hexylthiophene) field-effect transistors

Vol. 13

73. By Christos, D.Dimitrakopoulos*, I. Kumissis, S. Purushothaman, D.A.Neumayer, P.R. Duncombe, and R.B. Laibowtz, Adv.Mat. (1999), Vol. 11, Pages 1372-1375

Vol. 14

Page 30: Electronic Materials Library

Low-voltage, High -Mobility Pentacene Transistors with

Solution-Processed High Dielectric Constant Insulators

74. P.Coppo, M.L. Turner, D.C. Cupertino and S.G. Yeates,Mat. Res. Symp.(2003) Vol. 771, Pages L4.91-94 Investigation of the electronic properties of

cyclopentadithiophene polymers and copolymers

Vol. 14

75. D.Knipp, R.A. Street, B. Krusor, R.B. Apte, J. Ho, Proc. SPIE (2001), Vol. 4466, Pages 8-19 Influence of the gate dielectric on the morphological and

electronic structure of pentacene films for transistors

applications

Vol. 14

76. P.V. Necliudov, M.S. Shur, D.J. Gundluch, T.N. Jackson, Solid State Electronics, (2003), Vol. 47, Pages 259-262 Contact resistance extraction in pentacene thin film

transistors

Vol. 14

77. H.Kauk, G. Schmid, W.Radlik, W.Weber, L.Zhou, C.D. Sheraw, J.A. Nichols, T.N. Jackson, Solid State Electronics,(2003) Vol. 47, Pages 297-301 Contact resistance in organic thin film transistors

Vol. 14

78. J.A. Nichols, D.J. Gundluch, and T.N. Jackson, Appied Physics Letters,(2003), Vol. 83, Pages 2366/3 Potential imaging of pentacene organic thin-film transistors

Vol. 14

79. H.E. Katz, A.J. Lovinger, X.M. Hong, A. Dodabalapur, J. Johnson, B.-C. Wang, and krishnan Raghavachari, Proc. SPIE (2001), Vol.4466, Pages 20-29 Design of Organic Transistor Semiconductors for Logic

Elements, Displays, and Sensors

Vol. 14

80. R. Ruiz, B. Nickel, N. Koch, L.C. Feldman, R.F. Huglund, A. Kahn, Phys. Reev. B (2003), Vol. 67, Pages 125406/7 Pentacene ultrathin film formation on reduced and oxidized

Si surfaces

Vol. 14

81. D.J. Gundluch, C-C. Shelby Kuo, C.D. Sheraw, J.A. Nichols and T.N. Jackson, Proc. SPIE (2001) Vol.4466, Pages 54-63 Improved Organic Thin Film Transistor Performance using

Chemically-Modified Gate Dielectrics

Vol. 14

82. C.K. Song, B.-W.Koo, S.- B. Lee, and D.-H. Kim, Jpn. Applied Physics Vol.41, Pages 2730-2734 Characteristics of Pentacene Organic Thin Film Transistors

with Gate Insulator Processed by Organic Molecules

Vol. 14

83. J. Collet, O.Tharaud, A.Chapoton, and D. Vuillaume, Applied Phys. Lett.(2000), Vol. 76, Pages 1941/3 Low-voltage, 30 nm channel length, organic transistors with

a self-assembled monolayer as gate insulating films

Vol. 14

84. M.Yoshida, S. Uemura, T. Kodzasa, M. Matsuzasa, T. Kawan, Syn. Metals, (2003), Vol. 137, Pages 967-968 Surface Potential Control of an Insulator Layer for the

High Performance Organic FET

Vol. 14

85. J.H. Lee, S.H. Kim, G.H. Kim, S.C. Lim, H. Lee, J. Jang, T. Z yung, Syn. Metals, (2003), Vol. 139, Pages 445-451 Pentacene thin film transistors fabricated on plastic

Vol. 14

Page 31: Electronic Materials Library

substrates

86. H. Klauk, Student Member IEEE, D.J. Gundluch, Student Member IEEE, J.A. Nichols, and T.N. Jackson, Member, IEEE, IEEE Transaction on Electron Devices (1999),V46, P1258-1263 Pentacene Organic Thin – Film Transistors for Circuits and

Display Applications

Vol. 14

87. S.F. Nelson, Y.-Y. Lin, D.J. Gundluch, and T.N. Jackson, Applied Physics Letters(1998), Vol. 72, Pages 1854/3 Temperature-independent transport in high-mobility

pentacene transistors

Vol. 14

88. M.G. Kane, J. Campi, M.S. Hammond, F.P. Cuomo, B. Greening, C.D. Sheraw, J.A. Nichols, D.J. Gundlach, J.R. Hang, C.C. Kuo, L. Jia, H. Klauk and T.N. Jackson, IEEE Electron Device Letters (2000), Vol. 21,Pages 534-536 Analog and Digital Circuits using Organic Thin- Film

Transistors on Polyester Substrates

Vol. 14

89. D.J. Gundlach, Member IEEE, L. Jia, and T.N. Jackson, IEEE Electron Device Letters (2001), Vol. 22,Pages 571-573 Pentacene TFT With Improved Linear Region

Characteristics using Chemically Modified Source and

Drain Electrodes

Vol. 14

90. P.V. Necliudov, S.L. Rumyantsev, M.S. Shur, D.J. Gundlach and T.N. Jackson, J.of Appl.Phys.(2000),Vol.88, Pages 5395/5 1/f noise in pentacene organic thin film transistors

Vol. 14

91. Y.-Y. Lin, Student Member IEEE, D.J. Gundluch, S.F. Nelson, and T.N. Jackson, Member, IEEE, IEEE Transaction on Electron Devices (1997), Vol.44, Pages 1325-1331 Pentacene-Based Organic Thin- Film Transistors

Vol. 14

92. Y.-Y. Lin, D.J. Gundlach, S.F. Nelson, and T.N. Jackson, IEEE Electron Device Letters (1997), Vol. 18,Pages 606-608 Stacked Pentacene Layer Organic Thin- Film Transistors

with Improved Characteristics

Vol. 14

93. D.J. Gundlach, Y.-Y. Lin, T.N. Jackson, S.F. Nelson, and D.G.Schlom, IEEE Electron Device Letters(1997), V18, P87-88 Pentacene Organic Thin- Film Transistors-Molecular

ordering and Mobility

Vol. 14

94. C.D. Sheraw, L. Zhou, J.R. Haung, D.J. Gundlach and T.N. Jackson, M.G. Kane, I.G. Hill, M.S. Hammond, J. Campi, and B. Greening, J. Franci and J.West, Appl. Phys. Lett.(2002), Vol. 80, Pages 1088/3 Organic thin film transistor-driven polymer-dispersed

liquid crystal displays on flexible polymeric substrates

Vol. 14

95. Ch. Pannemann, T. Diekmann, U. Hilleringmann, Microelectronic Engg.(2003),Vol. 67-68, Pages 845-852 Nanometer scale organic thin film transistors with

Pentacene

Vol. 14

96. C.Grey, J. Wang, G. Duthaler, A. Ritenour and P. Drzaic, Proceedings of. SPIE (2001), Vol. 4466, Pages 89-94 Screen Printed Organic thin Film Transistors(OTFTs) on a

Flexible Substrate

Vol. 14

Page 32: Electronic Materials Library

97. J.H. Lee, S.H. Kim, G.H. Kim, S.C. Lim, H. Lee, J. Jang, T. Zyung, Syn. Meatals (2003), Vol. 139, Pages 445-451 Pentacene thin film transistors fabricated on plastic

substrates

Vol. 14

98. H. Klauk, D.J. Gundlach, M.Bonse, C.-C. Kuo and T.N. Jackson, App. Phys. Letters (2000), Vol. 76, Pages 1692/3 A reduced complexity process for organic thin film

transistors

Vol. 14

99. Y.-Y. Lin, D.J. Gundlach, S.F. Nelson, and T.N. Jackson, IEEE Electron Device Letters (1997), Vol. 18, Pages 606-608 Stacked Pentacene Layer Organic Thin Film Transistor

with improved characteristics

Vol. 14

100. X.M. Hong, H.E. Katz, A.J. Lovinger, B.-C. Wang, and K. Raghavachari, Chem. Mater(2001), Vol. 13,Pages 4686-4691 Thiophene-Phenylene and Thiophene-Thiozole Oligomeric

Semiconductors with High Field Effect Transistors On/OF

Ratios

Vol. 14

101. F. Garnier, R. Hajlaoui, A.EI. Kassmi, G. Horowitz, L. Laigre, W. Porzio, M. Armanini, and F. Provasolis, Chem. Mater (1998), Vol. 10, Pages 3334-3339 Dihexylquaterthiophene, A Two-Dimensional Liquid

Crystal-Like Organic Semiconductor with High Transport

Properties*

Vol. 14

102. A.J. Salih, D.M. Haynes and A.R. Hepburn, Syn. Meatals (1995), Vol. 71, Pages 2257-2258 Electronic characterisation of oligomeric materials for thin

film transistor applications

Vol. 14

103. G. Horowitz, F. Kouki, A.EI. Kassmi, P. Valat, V. Wintgens and F. Garnier, Adv.Mater.(1999), Vol. 11, Pages 234-238 Structure-Dependent Fluorescence in Sexithiophene Single

Crystals**

Vol. 14

104. D. Fichou, F. Demanze, G. Horowitz, R. Hajlaoui, M. Constant and F. Garnier, Syn. Meatals (1997), Vol. 85, Pages 1309-1312 Structural, Spectroscopic and Device Characteristics of

Octithiophene

Vol. 14

105. G. Barbarella, P. Ostoja, P. Maccagnani, L. Antolini, D.Casarini, and A. Bongini, Chem. Mater (1998), Vol. 10, Pages 3683-3689 Structural and Electrical Characterization of Processable

Bis-Silylated Thiophene Oligomers

Vol. 14

106. W. Li, H.E. Katz, A.J. Lovinger, and J.C. Laquindanum, Chem. Mater (1999), Vol. 11, Pages 458-465 Field- Effect Transistors Based on Thiophene Hexamer

Analogues with Diminished Electron Donor Strength

Vol. 14

107. C.H.Lei, A. Das, M.Elliott and J.E. Macdonald, App. Phys. Letterts, (2003), Vol. 83, Pages 482/3 Conductivity, of macromolecular networks measured by

electrostatic force microscopy

Vol. 14

108. M. Halik, H. Klauk, U. Zschieschang, T. Kriem, G. Schmid and W. Radik, K. Wussow, App. Phys. Letterts,(2002), V81, P289/3

Vol. 14

Page 33: Electronic Materials Library

Fully patterned all-organic thin film transistors

109. ►

T. Kawase, H. Srringhaus, R.H. Friend, T. Shimoda, Proceedings of. SPIE (2001), Vol. 4466, Pages 80-88 All-Polymer Thin Film Transistors Fabricated by Inkjet

Printing

Vol. 14

110. Z. Chiguvare, J. Parisi and V. Dyakonov, Journal of Applied Physics (2003), Vol. 94, Pages 2440/9 Current limiting mechanism in indium-tin-oxide/poly3-

hexylthiophene/ aluminum thin film devices

Vol. 15

111. E.J. Meijer, A.V.G. Mangnus, C.M. Hart, and D.M. de Leeuw, T.M. Klapwijk, Appl. Physics Lett. (2001),Vol. 78, Pages 3902 Frequency behavior and the Mott-Schottky analysis in

poly(3-hexyl thiophene) metal-insulator-semiconductor

diodes

Vol. 15

112. E.J.Meijer, C.Detcheverry, P.J.Baesjou, E.van Veenendaal and D.M. de Leeuw, T.M. Klapwijk, Journal of Applied Physics (2003), Vol. 93, Pages 48 31/5 Dopant density determination in disordered organic field-

effect transistors

Vol. 15

113. E.J.Meijer, C. Tanase, P.W.M. Blom, E.van Veenendaal, B.-H. Huisman and D.M. de Leeuw, T.M. Klapwijk, Appl. Physics Lett. (2002),Vol. 80, Pages 3838/3 Switch-on voltage in disordered organic field-effect

transistors

Vol. 15

114. G. Lloyd, M. Raja, I. Sellers, N. Sedghi, R.D. Lucrezia, S. Higgins, B. Eccleston, Microelectronic Engineering (2001), Vol. 59. Pages 323-328 The properties of MOS structures using conjugated

polymers as the semiconductor

Vol. 15

115. S. Scheinert, W. Schliehke, Syn. Metals (2003),V139, P501-509 Analyzers of field effect devices based on poly(3-

octylthiophene)

Vol. 15

116. L.A. Majewski, M. Grell, S. Ogier, J. Veres, Organic Electronics (2003), Vol.4 Pages 27-32 A novel gate insulator for flexible electronics

Vol. 15

117. L.A. Majewski, R. Schroeder, M. Grell, Journal Physics D: Application (2004), Vol.37, Pages 21-24 Flexible high capacitance gate insulators for organic field

effect transistors

Vol. 15

118. D.B.A.Rep,A.F.Morpurgo,Org.Electronics(2003), V4 P201-207 Doping-dependent charge injection into rgioregulator

poly(3-hexylthiophene)

Vol. 15

119. G. Liang, T. Cui, Solid State Electronics (2004), V48, P87-89 Fabrication and characterization of poly(3,4-

ethylenedioxythiophene) field effect transistors

Vol. 15

120. A.R. Akande, J.A. Adedoyin, Journal of Electronics (2001), Vol.51-52, Pages 105-110 Correlation of charge transfer in metal/polymer contact

with contact potential

Vol. 15

121. G. Juska, K. Arlauskas, R. Ostetbacka, H. Stubb, Synthetic Vol. 15

Page 34: Electronic Materials Library

Metals (2000),Vol. 109, Pages 173-176 Time-of-flight measurements in thin films of regioregulator

poly(3-hexylthiophene)

122. B. Ong,Y.Wu, L.Jiang, P.Liu, K. Murti, Syn. Metals xxx (2003), xxx-xxx Polythiophene-based field effect transistors with echanced

air stability

Vol. 15

123. R.P. Mikalo, D. SchmeibBer, Synthetic Metals (2002),Vol. 127, Pages 273-277 Electric contacts on conductive polymers: sodium on poly(3-

hexylthiophene-2, 5-diyl)

Vol. 15

124. M.W.G. Ponjee, M.A. Reijme, B.M.W. Langeveld-Voss, A.W. Denier van der Gon, H.H. Brongersma, Surface Science (2002), Vol. 512, Pages 194-200 Molecular surface structure of poly (3-hexylthiophene)

studied by low energy ion scattering

Vol. 15

125. M. Mas-Torrent, D. den Boer, M. Durkut, P. Hadley, and A.P.H.J. Schenning, Nanotech.(2004), Vol.15, Page S265-S269 Field effect transistors based on poly (3-hexylthiophene) at

different length scales

Vol. 15

126. F.C. Krebs, S.V. Hoffmann, M. Jorgensen, Synthetic Metals (2003),Vol. 138, Page 471-4774 Orientation effects in self-organized, highly conducting

regioregular poly(3-hexylthiophene) determined by vacuum

ultraviolet spectroscopy

Vol. 15

127. R. Ostetbacka, C.P. An, X.M. Jiang, Z.V. Vardeny, Synthetic Metals (2001),Vol. 116, Pages 317-320 Delocalized polarons in self-assembled poly(3-

hexylthiophene) nanocrystals

Vol. 15

128. C.Tanase, E.J.Meijer, P.W.M. Blom, D.M. de Leeuw, Organic Electronics (2003), Vol. 4, Pages 33-37 Local charge carrier mobility in disordered organic field

effect transistors

Vol. 15

129. V.R. Nikitenko, H. Hell, and H. Von Seggern, Journal of Applied Physics (2003), Vol.94, Pages 2480/6 Space-charge limited current in regioregular poly-3-hexyl-

thiophene

Vol. 15

130. Z.Bao, A. Dodabalapur, and A.J. Lovinger, Applied Physics Letter (1996), Vol.{69(26)}, Pages 4108-4110 Soluble and processable regioregular poly(3-hexylthiophene) for thin film field effect transistor

applications with high mobility

Vol. 15

131. P. Barta, F. Cacialli, R.H. Friend, W.R. Salaneck, M. Zagorska, A. Pron, Synthetic Metals (1999), Vol.101, Pages 296-297 On the influence of regioregularity on electronic and optical

properties of poly(alkylthiophenes)

Vol. 15

132. H. Sirringhaus, P.J. Brown, R.H. Friend, M.M. Nielsen, K. Bechgaard, B.M.W. Langeveld-Voss, A.J.H. Spiering, R.A.J. Janssen, E.W. Meijer, Synthetic Metals (2000), Vol.111-112, Pages 129-132

Vol. 15

Page 35: Electronic Materials Library

Microstructure-mobility correlation in self-organized,

conjugated polymer field effect transistors

133. K. Tada, H. Harada, M. Onoda, H. Nakayama, and K.Yoshino, Synthetic Metals (1999)981, Vol.102 Percolation in carrier transport in FET with dye doped

conducting polymers

Vol. 15

134. H. Sirringhaus, N. Tessler, R.H. Friend, Science (1998), Vol.280, Pages 1741-1743 Integrated Optoelectronic Devices Based on Conjugated

Polymers

Vol. 15

135. S. Frank, P. Poncharal, Z.L. Wang, W.A. de Heer, Science (1998), Vol.280, Pages 1744-1746 Carbon Nanotube Quantum Resistors

Vol. 15

136. S.K. Park, Y.H. Kim, J.I. Han, D.G. Moon, W.K. Kim, Thin Solid Films (2003), Vol.429, Pages 231-237 Eelectrical and Mechanical properties of low temperature

evaporated silicon oxide/polyimide dual-layer insulator for

plastic-based polymer transistor

Vol. 15

137. H.G.O. Sandberg, G.L. Frey, M.N. Shkunov, H. Sirringhaus, and R.H. Friend, M.M. Nielsen, C. Kumpf, Langmuir (2002), Vol.18. Pages 10176-10182 Ultrathin Regioregular Poly(3-hexyl thiophene) Field-

Effect-Transistors

Vol. 15

138. G. Wang, J. Swensen, D. Moses and A.J. Heeger, Journal of Applied Physics (2003), Vol.93, Pages 6137/5 Increased mobility from regioregular poly(3-

hexylthiophene) field-effect transistors

Vol. 15

139. H. Sirringhaus, N. Tessler, and R.H. Friend, Synthetic Metals (1999)981, Vol.102, Pages 857-860 Integrated, high-mobility polymer field-effect transistors

driving polymer lightt-emitting diodes

Vol. 15

140. N. Stutzmann, R.H. Friend, H. Sirringhaus, Science (2003), Vol .299. Pages 1881-1884 Self-Aligned, Vertical-Channel, Polymer Field-Effect

Transistors

Vol. 15

141. S.K. Yang, S.H. Kim, S.C. Lim, Jeong-lk Lee, J.H. Lee, L.-K. Do, and T. Zyung, Appl. Phys. Lett.(83), Vol..83, Pages 3939/3 Electric characteristics of poly(3-hexylthiophene) organic

field-effect transistors fabricated on O2 plasma-treated

substrates

Vol. 15

142. G. Wang, D. Moses and A.J. Heeger, H.-M. Zhang, M. Narasimhan, and R.E. Demaray, Journal of Applied Physics (2004), Vol.95, Pages 316/7 Poly(3-hexylthiophene) field-effect transistors with high

dielectric constant gate insulator

Vol. 15

143. A.Salleo, M.L. Chabinyc, and R.A. Street, Applied Physics Letter (2002), Vol. 81, Pages 4383/3 Polymer thin-film transistors with chemically modilfied

dielectric interfaces

Vol. 15

144. R.A. Street and A.Salleo, Applied Physics Letter (2002), Vol. Vol. 15

Page 36: Electronic Materials Library

81, Pages 2887/3 Contact effects in polymer transistors

145. A.Salleo, and R.A. Street Journal of Applied Physics (2003), Vol. 94, Pages 471/9 Light-induced bias stress reversal in polyfluorene thinifilm

transistors

Vol. 15

146. H. Sirringhaus, T. Kawase, R.H. Friend, T. Shimoda, M. Inbasekaran, W. Wu, E.P. Woo, Science (2000), Vol.290, Pages 2123-2126 High-Resolution Inkjet Printing of All-Polymer Transistor

Circuits

Vol. 15

147. H. Sirringhaus, R.J. Wilson, and R.H. Friend, M. Inbasekaran, W. Wu, E.P. Woo, M. Grell, and D.D.C. Bradley, Applied Physics Letter (2000), Vol. 77, Pages 406/3 Mobility enhancement in conjugated polymer field-effect

transistors through chain alignment in a liquid-crystalline

phase

Vol. 15

148. L. Burgi, T.J. Richards, R.H. Friend, and H. Sirringhaus, Journal of Applied Physics (2003), Vol. 94, Pages 6129/9 Close look at charge carrier injection in polymer field-effect

transistors

Vol. 15

149. D. SchmeiBer, Synthetic Metals (2003),Vol.138, Page 135-140 Valence states of poly(3-hexylthiophene) as probed by

photoelectron spectra at resonant excitation

Vol. 15

150. X.M. Jiang, R. Osterbacka, C.P. An, and Z.V. Vardney, Synthetic Metals (2003),Vol.137, Page1465-1468 Photoexcitons in Reio-regular and Regio-random

Polythiophene Films

Vol. 15

151. M.J.Banach, R.H. Friend, and H. Sirringhaus, Macroelectronics (2003), Vol.36, Pages 2838-2844 Influence of the Molecular Weight on the Thermotropic

Alignment of Thin Liquid Crystalline Polyfluorene

Copolymer Films

Vol. 15

Page 37: Electronic Materials Library

POLYSILANE Sl. No

Details of the paper including titles

Volume

1. D. Ghosh, G.S. Samal, A.K. Biswas, Y.N. Mohapatra, MSP and SCDT, Deptt. of Phys.IIT Kanpur-208016, INDIA Laser induced Degradation Studies of Photoluminescence of

PPV & CN-PPV Thin Films

Vol.1

2. N. Tanigaki, H. Kyotani, M. Wada, A. Kaito, Y. Yoshida, Eun-Mi. Han, K.Abe, K. Yase, Thin Solid Films, (1998), Vol. 331,Pages 229-238 Oriented thin films of conjugated polymers: Polysilanes and

polyphenylenes

Vol.1

3. P.Horvath, F. Shauer, I. Kuritka, O. Salyk, M. Weiter, N. Dokoupil, S. Nespurek, and V. Fidler, Monatshefte fur Chemie (2001), Vol. 132, Pages 177-183 Luminescence in Organic Silicons Prepared from Organic

Precursors in Plasma Discharges

Vol.1

4. Z.T. Liu, C.Y. Kwong, C.H. Cheung, A.B. Djurisic, Y. Chan, P.C. Chui, Synthetic Metals xxx (2005) xxx-xxx,Pages 1-5 The characterization of the optical functions of BCP and

CBP thin films by spectrscopic ellipsometry

Vol.1

5. O. B. Zrzavecka, A.Nebojsa, K. Navratil, S. Nespurek, J. Humlicek, Thin Solid Films (2004), Vol. 455-456,Page 278-782 Temperature dependence of ellipsometric spectra of

poly(methyl-phenylsilane)

Vol.1

6. B.G. Potter Jr., G.M. Jamison, H. Chandra, K.Simmons-Potter, W.J. Thomes, Materials letters (2005),Vol. 59, Pages 326-329 Atmospheric effects on the photosensitive response of

poly(methyl-phenylsilane) thin films

Vol.1

7. C.C. Phifer and W.J. Thomes, K.Simmons-Potter,and B.G. Potter W.J. Thomes., Journ. of Chem. Phys.(200004), Vol.120, Pages 1613/4 Vacuum-Ultraviolet spectroscopy of poly (methyl-

phenylsilylene)

Vol.1

8. W.J. Thomes Jr., K.Simmons-Potter, C.C. Phifer B.G. Potter Jr., G.M. Jamison, J.E. Jones and D.J. Casadonte Jr., Journal Applied Physics (2004), Vol. 96, Pages 6313/6 Photobleaching Camparison of

Poly(methyl-phenylsilylene) and Poly(phenylsilylene)

Vol.1

9. J.A. Woollam,C.Bungay, J.Hilfiker,T.Twald, Nuclear Instruments and Methods in Phys.Res.B (2003),V208, P35-39 UV and IR spectroellipsometric studies of polymer surfaces

Vol.1

10. L.A.Harrah and J.M.Zeigler, Macromol.(1987),V20, P601-8 Electronic Spectra of Polysilanes

Vol.1

11. Y. Nakayama, T. Kuraando, H. Hayashi, K. Oka, T Dohmaru, Jour. of Non-Crystalline Solids (1996), V198-200,Page 657-660 Photoinduced annihilation of σ bonds in amorphous

poly(methyl-phenylsilane)

Vol.1

12. Y. Nakayama, and S. Nanoyama, T Dohmaru, and L. Han,Solid Vol.1

Page 38: Electronic Materials Library

State Communication, (1994), Vol. 92, Pages 591-593 Photoluminescence study in Photooxydation of Poly(phenyl-

methylsilane) films

13. H. Hayashi, T. Kuraando, and Y. Nakayama, Japan Journal Applied Physics (1997), Vol.36, Pabes 1250-1255 Prephotobleaching Process in Polysilane Films

Vol.1

14. W.Y. Ching, and Y.-N. Xu, and R.H. French, Physical Review B,(1996), Volume-54, Pages 13546/5 First-Principles investigation of the optical properties of

crystalline poly(di-n-hexylsilane)

Vol.1

15. Y.S. Jung, Thin Solid Films xxx (2004) xxx-xxx Spectroscopic ellipsometry studies on the optical constants

of indium tin oxide films deposited under various sputtering

conditions

Vol.1

16. B.Dinger, S. Yilmaz, W. Brinker, W. Wirges, S.Bauer-Gogonea, Pure Applied.Optical (1996), Vol. 5, Pages 561-567 Ellipsometry and Michelson interferometry for fixed - and

variable – frequency electro-optical measurements on poled

polymers

Vol.1

17. H.-W. Lin, C.-L. Lin, H.-H. Chang, Y.-T. Lin, and C.-C. Wu, Y.M.Chen, R.T. Chen, Y.Y. Chien and K.T. Wong, Journal of Applied Physics (2004), Vol.95, Pages 881/6 Anisotropic optical properties and molecular orientation in

vacuum-deposited ter (9,9-diarylfluorene)s thin films using

spectroscopic ellipsimetry

Vol.1

18. H.J. Peng, Z.T. Liu, H.Y. Chen, Y.L. Ho, B.Z. Tang, M. Wong, H.C. Chuang and H.S. Kwok, Journal of Applied Physics (2002), Vol.92, Pages 5735/5 Optical constants of methyl-pentaphenylsilole by

spectroscopic ellipsometry

Vol.1

19. M.Losurdo, M.M. Giangregorio, P. Capezzuto, G. Bruno, F. Babudri, D. Colangiuli, G.M. Ferinola, F. Naso, Synthetic Metals (2003), Vol.138, Pages 49-53 Spectroscopic ellipsometry for characterization of organic

semiconductor polymeric thin films

Vol.1

20. S. Nespurek, Mat. Science and Engg C (1999), V8-9, P319-327 Thin polysilylene films. Their electronic and photoelectrical

properties

Vol.1

21. K. Navratil, J.Sik, J. Humlicek, S. Nespurek, Optical Materials (1999), Vol.12, Pages 105-113 Optical properties of thin films of poly(methyl-

phenylsilylene)

Vol.1

22. Asha Sharma, M. Katiyar and Deepak, Deptt. of MME and SCDT IIT Kanpur, India Optical Constants and Degradation Studies of di-phenyl and

methylphenylpolysilane Co-polymer using ellipsometry

Vol.1

23. ► Asha Sharma, M. Katiyar and Deepak, Deptt. Of MME and SCDT IIT Kanpur, India Optical Constants and Degradation Studies of di-phenyl and

methylphenylpolysilane Co-polymer using ellipsometry

Vol.1

Page 39: Electronic Materials Library

24. S. Nespurek, J.Sworakowski, A. Kadashchuk, P. Toman, Jour. of Organometallic Chemictry (2003), Vol.685, Pages 269-279 Polysilylenes: charge carrier transport and photogeneration

Vol.2

25. S. Hayase, Prog. Polymer Science (2003),Vol.28,Pages359-381 Polysilanes for semiconductor fabracation

Vol.2

26. J.-S. Kim, Peter K.H. Ho, N.C. Greenham, and R.H. Friend, Journal of Applied Physics (2000), Volo.88, Pages 1073/9 Electroluminescence emission pattern of organic light-

emitting diodes: Implications for device efficiency

calculations

Vol.2

27. Asha Sharma, Deepak, M. Katiyar, S.Kumar, V. Chandrashekhar, A.K. Saxena, A. Ranjan and R.K. Tiwari, Mat. Res. Soc. Symp. Proc.(2003), Vol.769, Pages H4.31-3.6 Degradation in a Methyl-Phenyl Co-Polymeric for LED

Applications

Vol.2

28. K. Simmons-Potter*, G.M. Jamison B.G. Potter, Jr., W.J.Thomas,Jr. and C.C. Phifer, Mat. Res. Soc. Symp. Proc. (2002), Vol.726, Pages Q12.5.1-12.5.7 Polysilanes-Based Thin Films with High Photosensitivity

Vol.2

29. G.E. Jellison, thin solid films (2004), Vol. 450, Pages 42-50, Generalized ellipsometry for materials characterization

Vol.2

30. H. Valerian, E. Brunda and S. Nespurek,W. Schnabe, Journal Applied Physics, (1995), Vol.78 (10), Pages 6071/8, The effect of poler additives on charge carrier transport in

polysilylenes

Vol.2

31. R.L.C. Vink, G.T. Barkema, C.A. Van Walree and L.W. Jenneskens, arXiv:cond.-mat/0102084 (2001), Vol.1, Pages 1-8 Simulation of polysilane and polysilyne formation and

structure

Vol.2

32. A.Kaito, N. Tanigaki, D. Hajiheidari, T. Yayabe, and Y. Tanabe, Jour. Phys, Chem.B (1999), Vol.103, Pages 8467-8473 Electronic Energy Transfer in Oriented Bilayer Films of

Polysilanes

Vol.2

33. K. Uehara, J.S. Tse, Chem. Phys. Lett. (1999),V301, P 474-480 Soft X-ray fluorescence spectra of photolumnescent layered

polysilanes

Vol.2

34. T. Iwamoto, M.Tamura, C. Kabuto, M. Kira, Science www.sciencemag.org (2000), Vol.290, Pages 504-506 A Stable Bicyclic Compound with Two Si = Si Double Bonds

Vol.2

35. T. Sato, K. Terao and A. Teramoto, M.Fujiki, Macromolecules (2002), Vol.35, Pages 2141-2148 Conformational Fluctuations of Helical Poly(dialkyl

silylene) in Solution

Vol.2

36. K. Sugiyama, and D. Yushimura, T. Miyamae, T. Miyazaki, H. Ishii, Y. Ouchi and K. Seki J.App. Phys.(1998),V83, P 4928/11 Electronic structure of organic molecular materials for

organic electroluminescent device studied by ultraviolet

photomission spectroscopy

Vol.2

37. I.G.Hill, A. Kahn, J. Cornil, D.A. dos Santos, J.L. Breadas, Chemical Physics Letters (2000), Vol.317, Pages 444-450

Vol.2

Page 40: Electronic Materials Library

Occupied and unoccupied electronic levels in organic π-

conjugated molecules: comparision between experiment and

theory

38. G. Loubriel and J. Zeigler, Phys. Rev. B(1986),Vol 33,P 4203/4 Photoelectron spectra of polysilanes

Vol.2

39. M.J. Frisch ...........................................................and J.A. Pople, http://igen.ch.kcl.ac.uk/ccwp/eg_g98.hti, Gaussian Inc. Pittsburgh PA USA, (Pages1-4) Gaussian 98

Vol.2

40. T.Tada, and R.Yoshimura, Journal Physical Chem.A (2003), Volume-107, Pages 6091-6098 Ab Initio MO Studies on Polysilane Oligomer Radical

Anions as Model Molecules of Polysilane Redical Anions

Vol.2

41. ► H. Kato, T. Karatsu, A. Kaito, S. Matsuyama, A. Katamura, Polymer (2003), Volume-44, Pages 3269-3277 How does an oxygen atom in the side chain affect the

photophysical properties of alkoxy-substituted

organopolysilane homopolymers and co-polymers

Vol.2

42. M. Fujiki, Macromol.Rapid Common (2001),Vol.22, P 539-563 Optically Active Polysilylenes: State-of-the-Art Chiroptical

Polymers

Vol.3

43. S. Toyada, and M. Fujiki, Macromolecules (2001), Vol.34, Pages 2630-2634 Origin of Broad Visible Photoluminescence from

Poly(alkylarylsilylene) Derivatives

Vol.3

44. S.-Y. Liu, Z.-K. Chen, L.-H. Wang, E.-T. Kang, Y.-H. Lai, S.-J. Chua, W. Huang, Synth. Metals(2000), Vol.114, Pages 101-104 Novel blue photoluminescent co-polymers containing

bipyridine and organosilicon

Vol.3

45. H. Suzuki. S. Hoshino, K. Furukawa, K. Ebata,C.-H.Yuan and I. Bleyl, Polym. Adv.Technology(2000), Vol.11, Pages 460-467 Polysilane Light-emitting Diodes

Vol.3

46. J.R. Koe, M. Fujiki, M. Motonaga, and H. Nikashima,Chem Common.(2000), Pages 389-390 Temperature-dependent helix-helix transition of an

optically active poly(diarylsilylene)

Vol.3

47. S. Mimura, H. Naito, Y. Kanemitsu, K. Matsukawa, H. Inoue, Jour.of Luminescence (2000), Vol.87-89, Pages 715-717, Optical properties of (organic polysilane)-(inorganic matrix)

hybrid thin films

Vol.3

48. S. Hyun, Jung, H.K. Kim Jour.of Luminescence (2000), Vol.87-89, Pages 51-55, Novel silicon-based copolymers for tunable light emitting

diodes: synthesis and characterization

Vol.3

49. Nico A.J.M. Sommerdijk, S.J. Holder, R.C. Hiorns, R.G. Jones, and R.J.M. Nolte, Macromolecules (2000), Vol.33, Pages 8289-8294, Self-Assembled Structures from an Amphiphilic Multiblock

Copolymer Containing Rigid Semiconductor Segments

Vol.3

50. Z.J. Meng, T.K. Li, W.K. Wong, K.W. Cheah, Applied Physics Vol.3

Page 41: Electronic Materials Library

Letters (2000), Vol.77, Pages 2795/3 Lumunescence of porous silicon/terbium organic complex

hybrid

51. I. Bleyl, K. Ebata, S. Hoshino, K. Furukawa, H. Suzuki, Synth. Metals(1999), Vol.105, Pages 17-22 Conformational phase transition in a high-efficiency near-

ultraviolet electroluminescent diarylpolysilane

Vol.3

52. S. Seki, Y. Yoshida, S. Tagawa, K. Asai, K. Ishigure, K. Furukawa, M. Fujiki and N. Matsumoto, Philosophical Magazine B (1999), Vol.79, Pages 1631-1645 Effects of structural defects on hole drift mobility in

arylsubtituted polysilanes

Vol.3

53. R.G. Jones, and Willium K.C. Wong, S. J. Holder, Organomettalics (1998), Vol.17, Pages 59-64 Correlation of Structure and Molecular Weight

Distributions during the Formation of Poly

(methylphenylsilylene) by the Wurtz Reductive-Coupling

Reaction

Vol.3

54. S J. Holder, R.C. Hiorns, Nico A.J.M. Sommerdijk, S. J. Willium, R.G. Jones, and R.J.M. Notle, Chem. Common.(1998), Pages 1445-1446 The first example of a poly (ethylene oxide)-

(methylphenylsilane) amphiphilic block copolymer: vesicle

formation in water

Vol.3

55. S. Toyada, M.Fujiki, H. Suzuki, and N. Matsumoto, Solid State Communications (1997), Vol.103, Pages 87-89 Estimation of Polysilane band gaps by fractional

dimensional theory

Vol.3

56. T. Hiraoka, Y. Majima, S. Murai, Y. Nakano, and S. Hayase, Polymer for Advance Technologies (1995), Vol.8, P 465-470 Oxygen-Crosslinked Polysilane: The new calss of Si-related

Material for electroluminescent devices

Vol.3

57. R.G. Jones, U. Budnik, S. J. Holder, and Willium K.C. Wong, Macromolecules (1996),Vol. 29, Pages 8036-8046 Reappraisal of the Origins of the Polymodal Molecular

Mass Distributions in the Formation of

Poly(methylphenylsilylene) by the Wurtz Reductive-

Coupling Reaction

Vol.3

58. K.Seki, H. Ishii, A. Yuyama, M. Watanabe, K. Fujiki, K. Furukawa, ......and N. Matsumoto, Jour. of Electron Spectroscopy and related Phenomena (1996), Vol.78, P 403-406 Electronic structures of polysilanes and related compounds

Vol.3

59. H. Tachibana, and M. Matsumoto..................and S. Abe, Physical Review B(1993), Vol. 47, Pages 4363-4371 Spectra of one-dimensional excitons in polysilanes with

various backbone conformations

Vol.3

60. ► K. Takeda, K. Shiraishi and N. Matsumoto, Journal American Chemical Society (1990), Vol.112, Pages 5043-5052 Theoretical study on the Electronic structure of Si-Ge

copolymers

Vol.3

Page 42: Electronic Materials Library

61. H. Krysova, J. Jirkovsky, J. Krysa, G. Mailhot, M. Bolte, Applied Catalysis B Environmental (2003),Vol. 40, Pages 1-12 Comparative kinetic study of atrazine photodegradation in

aqueous Fe(ClO4)3 solution and TiO2 suspensions

Vol.4

62. Asha Sharma, Deepak, M. Katiyar, S. Kumar, V. Chandrashekhar, A.K. Saxena, A. Ranjan, and R.K. Tiwari, Deptt. Of MME, SCDT, & DMSRDE, Kanpur, INDIA Degredation in a Methyl-phenyl Co-Polymerec Polysilane

for LED Applications

Vol.4

63. A.L. Macanita, F. Elisel, G. G. Aloisi, F. Ortica, V. Bonifaclo, A. Dias, E. Leitao, M.J. Caldeira, C.D. Maycock, and R.S. Becker, Photochemistry & Photobiology (2003),V77(1),P22-29 Photochemistry of Flavothione and Hydroxy Flavothiones:

Mechanism and Kinetics

Vol.4

64. E.A. Gadkariem, F. Belal, M.A. Abounassif, H.A. El-Obeid and K.E.E. Ibrahim, Journal of Liquid Chromatography and Related Technologies (2002), Vol.25, Pages 2947-2964 Photodegradation Kinetic Studies and Stability-Indicating

Assay of Diloxanide Furoate in dosage form using High-

Performance Liquid Chromatography

Vol.4

65. J. Headley, J.L. Du, X. Xu, and K. Peru, Communications in Soil Science and Plant Analysis (2002),Vol.33,Page 3287-3302 Kinetic of Photodegradation of Thifensulfuron-Methyl in

Aqueous Solutions

Vol.4

66. J.M. Shaw, P.F. Seidler, IBM J. Res.Dev. (2001), V45, P 3-9 Ogranic electronics: Introduction

Vol.4

67. C.D. Dimitrakopoulos and D.J. Mascaro, IBM J. Res.Dev. (2001), Vol.45, Pages 11-27 Organic thin - film transistos: A review of recent advances

Vol.4

68. D.B. Mitzi, K. Chondroudis and Kagan, IBM J. Res.Dev. (2001), Vol.45, Pages 29-45 Organic-inorganic electronics

Vol.4

69. S. Hayase, Progress Polymer Science xx (0000) xxx-xxx P1-23 Polysilanes for semiconductor fabrication

Vol.4

70. S. Aihara, Y. Hirano, T. Tijima, K. Tanioka, M. Abe, and N. Saito, Appl. Phys. Lett.(2003), Vol. 82, Pages 511/3 Wavelength selectivities of organoc photoconductive films:

Dye-doped polysilanes and zinc phthalocyanine/tris-8-

hydroxyquinoline aluminum double layer

Vol.4

71. S. Nespurek, A. Kadashchuk, Y. Skryshevski, A. Fujii, K. Yoshino, Journ. of Luminescence 0 (xxx) xxx-xxx Origin of broad visible luminescence in

poly[methyl(phenyl)silylene] thin films

Vol.4

72. V.I. Arkhipov, E.V. Emelianova, A. Kadashchuk and I. Bolnsky, S. Nespurek, D.S. Weiss, H. Bassler, Physical Review B (2002), Vol.65, Pages 165218-1/8 Polaron effects on thermally stimulated photoluminescence

in disordered organic systems

Vol.4

73. N. Kamata, R. Ishii, S. Tomsyo, and D. Terunuma, Applied Physics Letters (2002), Vol.81, Pages 4350/3

Vol.4

Page 43: Electronic Materials Library

Electroluminescence of mixed organic dyes via resonant

energy transfer from polysilane molecules

74. Y. Ohsawa, and H. Naito, Jour.of App.Phys.(2002),V91,P251/7 Photocarrier generation and bipolar transport in

diphenoquinone doped polymethylphenylsilane thin films

Vol.4

75. F.Schauer, I. Kuritka, N. Dokoupil, P. Horvath, Physics E (2002), Vol. 14, Pages 272-276 Nanostructural effects in plasmatically prepared

polysilylenes

Vol.4

76. S. Nespurek, J. Sworakowski, Thin Solid Films (2001), Vol. 393, Pages 168-176 Molecular current modulator consisting of conjugated

polymer chain with chemically attached photoactive side

groups

Vol.4

77. ► Y. Yoshida, Y. Nishihara, R. Ootake, A. Fujii, M. Ozaki, and K.Yoshino, H.K. Kim, and N.S. Baek, S.K. Choi, Journal of Appied Physics (2001), Vol. 90, Pages 6061/5 Spectral narrowing of photoluminescence and improvement

of electroluminescent properties in conducting polymers

with Si atoms in main chains

Vol.4

78. John J. Reynolds, CHEMTECH, (1988), Vol. 0, Pages 440-447 Electrically conductive polymers

Vol.5

79. J.A. Butcher, Jr., J.Q. Chambers, R.M. Pagni, American Chemical Sosiety (1978), Vol 0, Pages 1013-1015 Synthesis of Highly Conducting Films of Derivatives of

Polyacetylene(CH)x

Vol.5

80 Z.H. Wang, and C. Li, E.M. Scherr and A.G. MacDiarmid, A.J. Epstein, Physical Review Letters (1991),V66, Pages 1745-1748 Three Dimensionality of “Metallic’’ States in Conducting

Polymers: Polyaniline

Vol.5

81. TAKEO ITO, HIDEKISHIRAKAWA, & SAKUJI IKEDA, Journal of Polymer Science (1974), Vol. 12, Pages 11-20 Simultaneous Polymerization and Formation of

Polyacetylene Film on the Surface of Concentrated Soluble

Ziegler-Type Catalyst Solution

Vol.5

82. R.B. Kaner, and MacDiarmid, Pages 60-65 Plastics That Conduct Electricity

Vol.5

83. KUNGL VETENSKAPSAKADEMIEN The Royal Swedish Academy of Science, Information for the publicThe Nobel Prize inChemistry(2000)

Vol.5

84. H.R. Allcock, March 18, (1985), C.& EN, Pages 22-36

Inorganic Macromoleculars Developments at the interface of inorganic, organic, and

polymer chemistry

Vol.5

85. Neutral Excitations, Anna Kohler, Pages 1-9 Neutral Excitations (Excitation),

Vol.5

86. CHAPTE-15 Part–III Physical Characterization of Polymer, Pages 378-403 Secondary Methods for Molecular-Weight Determination

Vol.5

87. CHAPTE-1 Vol.5

Page 44: Electronic Materials Library

Part1 Synthesis and Reactions of Polymers, Pages 1-20 The Scope of Polymer Chemistry

88. CHAPTE-17 Part–III Physical Characterization of Polymer, Pages 420-443 Morphology, Glass Transitions, and Polymer Crystallinity

Vol.5

89. ► CHAPTE-21 Part–IV Fabrication and Testing of Polymers, Pages 528-531 The Testing of Polymers

Vol.5

90. H. Suzuki, S. Hoshino, C.Hua -Yuan, M. Fujiki, S, Toyoda, and N. Matsumoto, IEEE Journal of selected topics in quantum electronics,(1998), Vol. 4, Pages 129-135 Near-Ultraviolet Light –Emittimng Diodes Based on σ-

Conjugated Linear Silicon-Backbone Polymers`

Vol. 6

91. R.Hattori, T. Sugano, J.Shirafuji and T. Fujiki, Journal Applied Phiysics (1996), Vol.35, Pages 1509-1511 Room Temperature Ultraviolet Electroluminescence from

Evaporated Poly(dimethylsilane) Film

Vol. 6

92. Y. Xu, T. Fujino, S. Watase, H. Naito, K. Oka, and T.Dohmaru, Japan Journal Applied Phiysics (1999), Vol.38, Page 2609-2612 Enhanced Ultraviolet Emission in Polysilane Light-Emitting

Diodes by Inserting a SiOX Thin Layer

Vol. 6

93. K. Ebihara, Shin-ya Koshihara, T. Miyazawa, and M. Kira, Japan Journal Applied Phiysics (1996), Vol.35, Page 1278-1280 Polysilane-Based Polymer Diodes Emitting Ultraviolet Light

Vol. 6

94. A.Fujii, K. Yoshimoto, M. Yoshida, Y. Ohmori, and K.Yoshino, Jpn.J. Applied Phiysics (1995), Vol.34, P1365-1367 Ultraviolet Electroluminescent Diode Utilizing

Poly(methylphenylsilane)

Vol. 6

95. A.Fujii, K. Yoshimoto, M. Yoshida, Y.Ohmori, and K.Yoshino, H. Ueno, M.Kakimoto, and H. Kojima, Japan Journal Applied Phiysics (1996), Vol.35, Pages 3914-3917 Electroluminescent Diodes Utilizing Polysilanes

Vol. 6

96. H. Tachibana, and M. Matsumoto, Y. Tokura, Y. Moritomo, A. Yamaguchi, and S. Koshihara, R.D. Miller, S. Abe, Physycal Review B (1993), Vol.47, Pages 4363-4371, Spectra of one-dimensional excitons in polysilanes with

various backbone conformations

Vol. 6

97. S. Hoshino, H. Suzuki, M. Fujiki, M. Morita, N. Matsumoto, Synthetic Metals (1997),Vol.89, Pages 221-225 Electroluminescent characteristics of one-dimensional

silicon chains in dialkyl polysilane

Vol. 6

98. H. Suzuki, Jour.of Luminescence (1997), V72-74, P1005-1006 Behavior of charge carriers and excitons in

poly(methylphenylsilane) as investigated by

electroluminescence from single - layer – light - emitting

diodes

Vol. 6

99. E.J.W. Liat, S. Tasch, T. Hochfilzer, G. Leising, P. Schlichting, U. Rohr, Y. Geerts, U. Scherf, K. Miillen, Optical Materials (1998), Vol. 9, Pages 183-187 Efficient color tuning (blue, red-orange, white) of light

Vol. 6

Page 45: Electronic Materials Library

emitting diodes by excitation energy transfer

100. A.Niko, S. Tasch, F. Meghdadi, C. Brandstatter, G. Leising, Optical Materials (1998), Vol. 9, Pages 188-191 White light and red-green-blue (RGB) Electroluminescence

by light color-conversion

Vol. 6

101. C.-I. Chao and S.-A.Chen, Appl.Phys. Lett.(1998),V73, P426/3 White light emission from exciplex in a bilayer device with

two blue light-emitting polymers

Vol. 6

102. G. Leising, F. Meghdadi, S. Tasch, C. Brandstatter, W. Graupner, G. Kranzelbinder, Synthetic Metals (1997),Vol.85, Pages 1209-1212 Light emission from conjugated materials generated by

charge carrier injection and photoluminescence

Vol. 6

103. ► E. Berkovich, J. Klein, T. Sheradsky, E.R. Silcoff, K.T. Ranjit, I. Willner, G. Nakhmanovich, V. Gorelik, Y. Eichen, Synthetic Metals (1999),Vol.107, Pages 85-91 Adjustable electroluminescence: blue-green to red organic

light-emitting diodes based on novel poly-non-conjugated

oligomers

Vol. 6

104. Y.Yang, Q.Pei, A.J. Heeger, Syn.Metals (1996),V78, P 263-267 Efficiency blue light-emitting diodes from a soluble

poly(para-phenylene) : internal field emission measurement

of the energy gap in semiconducting polymers

Vol. 7

105. S.-A. Chen, C.-I. Chou, Synthetic Metals (1996), V79, P 93-96 Poly (2-alkoxy-p-phenylene)s as deep-blue light-emitting

polymers

Vol. 7

106. B. Chen, X.H. Zhang, X.Q. Lin, H.L. Kwong, N.B. Wong, C.S. Lee, W.A. Gambling, S.T. Lee, Synthetic Metals (2001), Vol.118, Pages 193-196 Improved color purity and efficiency of blue organic light

emitting diodes via suppression of exciplex formation

Vol. 7

107. F. Cacialli, B. S. Chuah, R.H. Friend, S.C. Moratti, A.B. Holmes, Synthetic Metals (2000), Vol.111-112, Pages 155-158 Blue light-emitting diodes from a meta-linked 2,3

substituted alkoxy poly(p-phenylenevinylene)

Vol. 7

108. Z.Lu, Q. Jiang, W. Zhu, M. Xie, Y. Hou, X. Chen, Z. Wang, D. Zou, T. Tsutsui, Synthetic Metals (2000), V111-112, P 425-427 Efficient blue emission from pyrazoline organic light

emitting diodes

Vol. 7

109. S. Tokito, K. Noda, H. Tanaka, Y. Taga, T. Tsutsui, Synthetic Metals (2000), Vol. 111-112, Pages 393-396 Organic light-emitting diodes using novel metal-chelate

complexes

Vol. 7

110. X.H. Zhang, S.K.Wu, Z.Q. Gau, C.S. Lee, S.T. Lee, H.L. Kwong, Thin Solid Films (2000), Vol. 371, Pages 40-46 Pyrazoline derivatives for blue color emitter in organic

electroluminescent devices

Vol. 7

111. R. Zhang, H. Zheng, J. Shen, Syn.Metals (1999), V105, P 49-53 Blue light-emitting diodes based on coronene-doped

polymers

Vol. 7

Page 46: Electronic Materials Library

112. J.P. Yang, P.L. Heremans, R. Hoefnagels, W. Tachelet, P. Dieltiens, F. Blockhuys, H.J.Geise, G. Borghs, Synthetic Metals (2000), Vol. 108, Pages 95-100 Blue organic light - emitting diode using 1,4-bis (1, 1-

diphenyl-2-ethenyl) benzene as an emitter

Vol. 7

113. Z. Hong, W. Li, D. Zhao, C. Liang, X, Liu, J. Peng, D. Zjao, Synthetic Metals (1999), Vol.104, Pages 165-168 Spectrally-narrow blue light - emitting organic

electroluminescent devices utilizing thulium complexes

Vol. 7

114. E.I.Haskal, Synthetic Metals (1997), Vol. 91, Pages 187-190 Characterization of blue-light-emitting organic

electroluminescent devices

Vol. 7

115. A. Adachi, H. Yasuda, T. Sanji, H. Sakurai, K. Okita, Journal of Luminescence (2000), Vol. 87-89, Pages 1174-1176 Organic electroluminescence of silole-incorporated

polysilane

Vol. 7

116. F. Garten, A. Hilberer, F. Cacialli, F.J. Esselink, Y. Van Dam, A.R. Schlatmann, R.H. Friend, T.M. Klapwijk, G. Hadziioannou, Synthetic Metals (1997), V85, Pages 1253-1254 Blue Light Emitting Diodes based on a partially conjugated

Si-containing PPV-copolymer in a multilayer configuration

Vol. 7

117. Y.J. Fu, T.K.S. Wong, G.M. Wang, X. Hu, H.X. Zhang, Z.S. Gao, M.H. Jiang, Chem. Phys. Lett.(2001),V343,Page 201-204 Electroluminescent properties of a derivatives of a

quinquepyridine

Vol. 7

118. J. Choi, M. Chipara, B. Xu, C.S. Yang, B. Doudin, P.A. Dowben, Chem. Phys. Lett.(2001), Vol. 343, Pages 193-200 Comparision of the π-conjugated ring orientations in

polyaniline and polypyrrole

Vol. 7

119. ► W.Brutting, S.Berleb, A.G.Muckl, Organic Electronics (2001), Vol.2, Pages1-36 Device physics of organic light-emitting diodes based on

molecular materials

Vol. 7

120. Asha Sharma, Monica Katiyar, Deepak, Department of MME and Samtel Centre for Display Technology, IIT Kanpur, INDIA Optical Constants and Degradation Studies of diphenyl and

methylphenyl Polysilane copolymer using Ellipsometry

Vol.8

121. R.Hooper, L.J.Lyons, M.K. Mapes, and D. Schumacher, D.A. Moline, and R. West, Macromolecules(2001),Vol.34, P 931-936 Highly Conductive Siloxane Polymers

Vol.8

122. J.-S.Lee, A.Hirao and S.Nikahama, Mac.(1988),V21, P 276-278 Ferrocenyl Containing Polysilanes

Vol.8

123. Asha Sharma, Deepak, M. Katiyar, S.Kumar, V. Chandrashekhar, A.K. Saxena, A. Ranjan, and R.K. Tiwari Department of MME and Samtel Centre for Display Technology, IIT Kanpur, INDIA Degradation in a Methyl-phenyl Co-Polymeric Polysilane

for LED Applications

Vol.8

124. S. Kumar, A.K. Biswas, V.K. Shukla, A. Awasthi, R.S. Anand, J. Narain, Synthetic Metals (2003), Vol. 139, Pages 751-753

Vol.8

Page 47: Electronic Materials Library

Application of spectroscopic ellipsometry to probe the

environmental and photo-oxidative degradation of poly(p-

phenylenevinylene) (PPV) 125. S. Miura, A. Kobayashi, H. Naito, Y. Matsuura, K. Matsukawa,

H. Inoue, Synthetic Metals (2003), Vol. 137, Pages 1405-1406 Photoinduced refractive index in changes in organic-

polysilane-inorganic hybrid thin films

Vol.8

126. H. Kato, T. Karastu, A. Kaito, A. Kitamura, Polymer xx (0000), xxx-xxx Pages1-7 Optical properties of the thin films of

poly(methylpentoxysilane) homopolymers and copolymers

Vol.8

127. P.Horvath, F. Schauer, O. Salyk, I. Kuritka, S. Nespurek, V. Fidler, J. of Non-Crystalline Solids (2000),V266-269,P 989-993 Luminescence in plasma polysilylenes prepared from

organosilanes

Vol.8

128. S. Furukawa, H.Ohta,Thin Solid Films(2003),V438-439,P48-55 Structure and Orientation of vacuum-evaporated poly(di-

methylsilane) film

Vol.8

129. T. Sato, K. Terao, A. Teramoto, M. Fujiki, Polymer xx (0000), xxx-xxx Pages1-19 Molecular properties of helical polysilylenes in solution

Vol.8

130. T. Clark, Pages369-380 Semiempirical Molecular Orbital Theory: Facts, Myths, and

Legends

Vol.8

131. S. Furukawa, K.-I. Takeuchi, M. Shimana, Journan Physics Codens. Matter, (1994), Vol. 6, Pages 11007-11014 Crystal structures of poly(di-n-butylsilane) and poly(di-n-

pentylsilane)

Vol.8

132. ► H.Michl,R.West,Silicon –Containing Polyme,(2000), P499-529, Electronic Structure and Spectroscopy of Polysilanes

Vol.8

133. H. Suzuki, H. Meyer, and S. Hoshino, D, Haarer, Journal Applied Physics(1995), Vol. {78(4)}, Pages 2684/7 Electroluminescence from multilayer organic light-emitting

diodes using poly(methylphenylsilane) as hole transporting

material

Vol.9

134. H. Suzuki, S. Hoshino, C.-H. Yuan, M. Fujiki, S.Toyoda, and N. Matsmoto, IEEE Journal of Selected Topics in Quantum Electronics (1998), Vol.4, Pages 129-135 Near-Ultraviolet Light-Emitting Diodes Based on σ-

Conjugated Linear Silicon-Backbone Polymers

Vol.9

135. A.Fujii, K.Yoshimoto, M. Yoshida, Y.Ohmori, and K. Yoshino, Japan Journal Applied. Physics (1995), Vol. 34.Page 1365-1367 Ultraviolet Electroluminescent Diode Utilizing

Poly(methylphenylsilane)

Vol.9

136. S. Hoshino, K.Furukawa, K. Ebata and I.Breyl, H. Suzuki, Journal of Applied Physics (2000), Vol.88, Pages 3408/6 Molecular weight dependence of the conformational phase

transition and electroluminescence of diarylsilane diodes

Vol.9

137. S. Hoshino, K.Furukawa, K. Ebata and C.-H. Yuan, H. Suzuki, Journal of Applied Phys. (2000), Vol.88, Pages 2892/6

Vol.9

Page 48: Electronic Materials Library

Molecular weight dependent electroluminescence of silicon

polymer near-ultraviolet light-emitting diodes 138. O. Salyk, I. Kuritka, M. Weiter, and F. Schuuer,

Oriented Thin Films Polysilanes and their properties Vol.9

139. M. Shimomura, H. Okumoto, A. Kaito, and K. Ueno, J. Shen, K. Ito, Macromolecules (1998), Vol. 31, Pages 7483-7487 Infrared Spectroscopic Studies on the Molecular

Orientation of Vacuum-Deposited Thin Films of

Poly(dimethylsilane) and a Linear Oligosilane

Vol.9

140. M. Shimomura, H. Kyotani, and A. Kaito, Macromolecules (1997), Vol. 30, Pages 7604-7606 Methyl Rocking Vibrational Modes of Poly(dimethylsilane)

Vol.9

141. K.-I. Takeuchi and S.Furukawa, Japan Journal Applied. Physics (1995), Vol. 34. Pages 195-198 New Surface-Imaging Process for Electron Beam

Lithography Using Highly-Oriented Polydimethylsilane

Film

Vol.9

142. T. Yoshimura, K. Motoyoshi, S. Tatsuura, W. Sotoyama, A. Matsuura,and T.Hayano, Jpn.J.Appl.Phys.(1992),V31,P980-982 Selectively Aligned Polymer Film Growth on Obliquely

Evaporated SiO2 Pattern by Chemical Vapor Deposition

Vol.9

143. R.D. Miller, and R. Sooriyakumaran, Journal of Polymer s Science Part C: Polymer Letters (1987), Vol.25, Pages 321-325 The Synthesis and Characterization of the First Soluble ,

High Molecular Weight, Substituted Poly(diphenylsilane)

Homopolymers

Vol.9

144. ► R.D.Miller, and J.Michl,Am.Chem.Soct(1989),Pages1369-1410 Polysilane High Polymers

Vol.9

145. Y. Nakayama, T.Kurando, H. Hayashi, K. Oka, T. Dohmaru, Jou. of Non-Crystalline Solids (1996), V198-200,Page 657-660 Photoinduced annihilation of σ bonds in amorphous

poly(methylphenylsilan)

Vol.10

146. Y. Nakayama, and S. Nonoyama, T. Dohmaru, and L. Han, Solid State Communications (1994), Vol. 92, Pages 591-593 Photoluminescence Study in Photooxidation of

Poly(phenylmethylsilane) Films

Vol.10

147. T.-Q. Nguyen, I.B. Martini, J. Liu and B.J. Schwartz, Journal Physics Chemistry B (2000), Vol. 104, Pages 237-255 Controlling Interchain Interactions in Conjugated

Polymers: The Effects of Chain Morphology on Exciton-

Exciton Annihilation and Aggregation in MEH-PPV of

Films

Vol.10

148. J.H.Kim, J.Jang, and W-C. Jin, Langmuir(2000),V16, P4064-67 Estimation of the Thickness Dependence of the Glass

Transition Temperature in various Thin Polymer Films

Vol.10

149. M. Miccini, M. Murgia, F. Biscarini, and C. Taliani, Advanced Materials (2000), Vol. 13. Pages 355-358 Mophology Controlled Energy Transfer in Conjugated

Molecular Thin Films

Vol.10

150. T.W. Kelley, E.L. Granstrom, and D. Frisbie, Advanced Vol.10

Page 49: Electronic Materials Library

Materials (1999), Vol. 11. Pages 261-264 Conducting Probe Atomic Force Microscopy: A

Characterization Tool for Molecular Electronics 151. C. Flueraru, S. Schrader, V. Zauls, H. Motschmann, B. Stiller,

R. Kiebooms, Synthetic Metals (2000), Vol.111-112, P603-606, Ellipsometric and atomic force microscopic investigations

on poly(para-phenylenevinylene) and

poly(phenylquinoxaline. Thin films)

Vol.10

152. A.B. Djurisic, C.Y. Wkong, W.L. Guo, T.W. Lau, E.H. Li, Z.T. Liu, H.S. Kwok, L.S.M. Lam, W.K. Chan, Thin Solid Films (2002), Vol. 416, Pages 233-241 Spectroscopic ellipsometry of the optical functions of tris (8-

hydroxyquinoline) aluminum (Alq3)

Vol.10

153. IEEE Journal on Selected Topics in Quantum Electronics,(2002), Vol.8, Pages 185-188 Introduction to the Issue on High-Efficiency Light-Emitting

Diodes

Vol.10

154. C.B.Walsh,E.I.Franses, Thin Solid Films(1999),V347,P167-177 Thickness and quality of spin-coated polymer films by two-

angle ellipsometry

Vol.10

155. C. Suess, F.P. Wenzl, G. Jakopic, M. Wuchse, S.Muellegger, N. Koch, A. Haase, K. Lamprecht, M. Schatzmayr, C. Mitterbauer, F. Hofer, G.Leising, Surface Sc. (2002), V507-510, P473-479 Combined XPS, AFM, TEM and ellipsometric studies on

nanoscale layers in organic light emitting diodes

Vol.10

156. D. Beyerlein, T. Kratzmuller, K.-J. Eichhorn, Vibrational Spectroscopy (2002), Vol.29, Page 223-227 Study of novel polymer architectures on solid surfaces by

variable angle spectroscopic and imaging ellipsometry

Vol.10

157. I.S. Millard, Synthetic Metals (2000), V111-112, Pages 119-123 High-Efficiency poyfluorene polymers suitable for RGB Applications,

Vol.10

158. B. Liu, Y.-H. Niu, W.-L.Yu, Y. Cao, W. Huang, Synthetic Metals (2002), Vol. 129, Pages 129-134, Application of alternating fluorene and thiophene

copolymers in polymer light-emitting diodes

Vol.10

159. R.B. Fletcher, D.G. Lidzey, D.D.C. Bradley, S. Walker, M. Inbasekaran, E.P.Woo, Synthetic Metals (2000), Vol. 111-112, Pages 151-153 High brightness conjugated polymer LEDs

Vol.10

160. T.M. Brown and R.H. Friend, I.S. Millard, D.J. Lacey, and D.J. Burrouhges, F. Cacialli, App.Phys. Lett.(2001),Vol. 79, P174/3 Efficient electron injection in blue-emitting polymer light-

emitting diodes with LiF/Ca/Al cathodes

Vol.10

161. K. Murata, S. Cina, N.C. Greenham, Appied Physics Letters (2001),Vol.79, Pages 1193/3 Barriers to electron extraction in polymer light-emitting

diodes

Vol.10

162. M. Inbasekaran, E.Woo, W. Wu, M. Bernius, L. Wujkowski, Synthetic Metals (2000), Vol. 111-112, Pages 397-401

Vol.10

Page 50: Electronic Materials Library

Fluorene homopolymers and copolymers 163. M. Redecker, and D.D.C. Bradley, M. Inbasekaran, and

E.P.Woo, Appied Physics Letters (1998),Vol.73, Pages 1565/3 Nondispersive hole transport in an electroluminescent

polufluorene

Vol.10

164. A.W. Grice, and D.D.C. Bradley, M.T. Bernius, M. Inbasekaran, W. W. Wu, and E.P.Woo, Appied Physics Letters (1998),Volume 73, Pages 629/3 High brightness and efficiency blue light-emitting polymer

diodes

Vol.10

165. A. Sharma, Deepak, S. Kumar, M. Katiyar, A.K. Saxena, A. Ranjan, R.K. Tiwari, Deptt. Of MME ,Physics, SCDT, and DMSRDE, Kanpur, INDIA Optical Characterization of Ploysilane Thin Films

Vol.10

166. United States Patent [12] (Patent No. US 6361885B1 & Date: March 26, 2002) Inventor: H.Z.Chou Organic Electroluminescent Materials and Device made

from such Materials

Vol.10

167. United States Patent [19] (Patent No.5644013 & Date: Jul.1,1997) Inventors: C.-H. Yuan, R.C. West Fluorescent Organosilicon Polymers

Vol.10

168. United States Patent [19] (Patent No.5166016 & Date: Nov.24, 1992) Inventors: S.S. Badesha, M.M. Shahin Photoconductive Imaging Members Comprising a

Polysilylene Donor Polymer and an Electron Acceptor

Vol.10

169. United States Patent [19] (Patent No.6165383 & Date: DEC.26, 2000) Inventor: H.Z.Chou Useful Precursors for Organic Electroluminescent Materials

and Devices made from such Materials

Vol.10

170. United States Patent [19] (Patent No.4595599 & Date: June17, 1986) Inventor: R.N. Brown, E. Okia, M.F. Stout, A.P. Hagen, L. Garwin Luminescent Silane

Vol.10

171. United States Patent [19] (Patent No.5281489 & Date: Jan.25, 1994) Inventors: Y.Morl, H. Endo Electroluminescent Element

Vol.10

172. United States Patent [19] (Patent No.5802233 & Date: Sept.1,1998) Inventors: S. Sugi, K. Kabeta, S. Wakamatsu, T. Imal Polysilane Optical Device

Vol.10

173. United States Patent [12] (Patent No. US 6456636B1 & Date: Sept, 24 2002) Inventor: H.Z.Chou Ultraviolet Electroluminescent Element and Laser

Vol.10

Page 51: Electronic Materials Library

Luminescent Element

174. United States Patent [12] (Patent No. US 6204514B1 & Date: March 20, 2001) Inventor: S. Koshiyara, K. Ebihara, T. Miyazawa, M. Kira Ultraviolet Electroluminescent Element and Laser

Luminescent Element

Vol.10

175. United States Patent [19] (Patent No.5792813 & Date: Aug.11,1998) Inventors: S. Sugi, K. Kabeta, S. Wakamatsu, T. Imal Fluorescent Organosilicon Polymers

Vol.10

176. A. Sharma, Deepak, S. Kumar, M. Katiyar, A.K. Saxena, A. Ranjan, R.K. Tiwari, Deptt. Of MME ,Physics, SCDT, and DMSRDE, Kanpur, INDIA Degradation in a Methyl-phenyl Co-Polymeric Polysilane

for LED Applications

Vol.10

177. CHAPTER-5 Tuning of the Luminescence

In

Poly[(silanylene) thiophene]s

Vol.10

178. ► Principal Investigator: Deepak Gupta Submitted to :DST, Govt. of India

UV and Near- UV Light Emitting Diodes using Polysilanes

Vol.10

179. V. Cimrova, and D. Vyprachrticky, Appied Physics Letters (2003),Vol.82, Pages 642/3 Enhanceed electroluminescence from light-emitting devices

based on poly(9,9-dihexadecylfluorene-2,7-diyl) and

polysilane blends

Vol.11

180. F.C. Grozema, L.D.A. Siebbeles, J.M. Warman, S. Seki, S. Tagawa and U. Scherf, Adv. Materials (2002), V14, P228-231 Hole Conduction along Molecular Wires:σ-Bonded Silicon

Versus π-Bond- Conjugated Carbon

Vol.11

181. A. Adachi, H. Yasuda, T. Sanji, H. Sakurai, K. Okita, Journal of Luminescence (2000) Vol.87-89, Pages 1174-1176 Organic electroluminescence of silole-incorporated

polysilane

Vol.11

182. S. Aihara, Y. Hirano, T. Tajima, K. Tanoika, M. Abe and N. Saito, N. Kamata, and D. Terunuma, Appied Physics Letters (2003),Vol.82, Pages 511/3 Wavelength selectivities of organic photoconductive

films:Dye-doped polysilanes and zinc phthalocyanine/tris-8-

hydroxyquinoline aluminum double layer

Vol.11

183. N. Kamata, and D.Terunuma,R. Ishii, H. Satoh, S. Aihara, Y. Yaoita, S.Tonsyo, J.of Organmet. Chem.(2003),V685,P235-242 Efficient energy tranfer from polysilane molecules and its

application to electroluminescence

Vol.11

184. D. Vyprachrticky, and V. Cimrova, Macromolecules (2002), Vol.35, Pages 3463-3473 New Synthesis Electroluminescence, and Photophysical

Properties of Poly{(formylphenyl) methylsilanediyl} and its

Derivatives

Vol.11

Page 52: Electronic Materials Library

185. F. Garten, A. Hilberer, F. Cacialli, F.J. Esselink, Y.van Dam, A.R. Schlatmann, R.H. Friend, T.M. Klapwijk, and G. Hadziioannou, Synthetic Metals (1997), Vol.85, Pages 1253-54 Blue Light-Emitting Diodes based on a partially conjugated

Si-containing PPV-copolymer in a multilayer configuration

Vol.11

186. A. Hilberer, J. Wildeman, H.-J. Brouwer. F. Garten, G. Hadziioannou, Proc.SPIE (1995). Vol.2528, Pages 74-80 Conjugated block copolymers for light-emitting diodes

Vol.11

187. Ing. Ota Salyk, CSc.(2003), Pages1-40 Thin Films Deposition of Amorphous Silicon and

Organosilicon Compounds

Vol.11

188. S. Aihara, N. Kamata, A. Nishibori, K.Nagumo, H. Sato, D.Terunuma, K. Yumada, Journal of Luminescence (2000) Vol.87-89 , Pages 745-747 Efficient intermolecular energy transfer between soluble

polysilanes

Vol.11

189. S. Satoh, H. Suzuki, Y. Kimata, A. Kuriyama, Synthetic Metals (1996), Vol.79, Pages 97-102 Optical and electroluminescence, properties of

poly(methylphenylsilanes) containing an anthracene unit

Vol.11

190. R.Hettori, T. Sugano, T. Fujiki, Y. He, J. Kanickl, (P1-4) `Full-color Light-Emitting Devices Based on π-and-σ-

Conjugated Polymer Materials

Vol.11

191. A. Fujii, M. Yoshida, K. Yoshimoto, Y. Ohmori, K. Yoshino, H. Ueno, M. Kakimoto, and H. Kojima, Synthetic Metals (1997), Vol.85, Pages 1261-1262 Ultraviolet electroluminescence and dye doping effect in

conducting polymers

Vol.11

192. Ss. Toyoda and M. Fujiki, Macromolecules (2001), Vol.34, Pages 2630-2634 Origin of Broad Visible Photoluminescence from

Poly(alkylarylsilylene) Derivatives

Vol.11

193. K. Furukawa, Acc. Chem. Res. (2003), Vol. 36, Pages 102-110 End-Grafted Polysilane-An Approach to Single Polymer

Science

Vol.11

194. R.R. Kunz, and M.W. Horn, P.A. Bianconi, D.A. Smith, and C.A. Freed, American Vacuum Society(1991),Pages 1447-4151 Photo-oxidation of σ-conjugated Si-Si network polymers

Vol.11

195. H.P. Trommsdroff, J.M. Zeigler, R.M. Hochstrasser, Journal Chem. Physics(1988), Vol. {89(7)}, Pages 4440-4441 Spectral hole burning in polysilanes

Vol.11

196. M.Lagarde and J.C. Dubois, Pages 868-870 Polysilanes Doped with phthalocyanines as Photoconductors

Vol.11

197. S. Nespurek, J. Sworakowski, and A, Kadashchuk, IEEE Transact.on Dielectrics and Elect.Insulaion(2001),V8, P432/10 The Influence of Dipolar Species on Charge Carrier

Transport in a Linear Polysilicon

Vol.11

198. T. Hasegawa, Y. Iwasa, T. Koda, H. Kushida, Y. Tokura, ......R.D.Miller Syn. Metals(1995),Vol.71, P 1679-1680 Non-linear optical spectroscopy on polysilanes: Dependence

Vol.11

Page 53: Electronic Materials Library

of exciton states on polymer backbone conformations

199. K.Furukawa, C.-H.Yuan, S. Hoshino, H. Suzuki, and N. Matsumoto, Pages 25-28 Bipolar behavior in a Near UV Electroluminescent Silicon

Polymer

Vol.11

200. J. Pfleger, I. Kminek, S. Nespurek, Pages -891-896 Electronic Transport in Poly(methylphenylsilylene)

Modified by π-Conjugated Choromophores

Vol.11

201. R.G. Kepler, J.M. Zeigler, L.A. Harrah, and S.R. Kurtz, Physical Reviw B (1987), Vol.35, Pages 2818-2822 Photocarrier generation and transport an σ-bonded

polysilanes

Vol.11

202. ►

J. Pfleger, I. Kminek, S. Nespurek, IEEE TransactIions on Electrical Insulaion (1992),Vol.27 ,Pages 856-860 Photoconductivity in Polysilanes with Attached π-

Conjugated Choromophores

Vol.11

203. Journal of Polymer Science: Polymer Letters Edition (1983), Vol.21, Pages 819-822 Organosilane High Polymers: Synthesis of Formable

Homopolymers

Vol.12

204. R.D. Miller, R.Sooriyakumaran, Journal of Polymer Science: Part C:Polymer Letters, (1987), Vol. 25, Pages 321-326 The Synthesis and Characterization of the First Soluble,

High Molecular Weight, Substituted Poly(diphenylsilane)

Homopolymers

Vol.12

205. R.G. Jones, U. Budnik, S.J. Holder, and W.K.C. Wong, Macromolecules(1996), Vol.29, Pages 8036-8046 Reappraisal of the Origins of the Polymodal Molecular

Mass Distribution in the Formation of

Poly(methylphenylsilylene) by the Wurtz Reductive-

Coupling Reaction

Vol.12

206. T.Yamaka, Y.Nakashiba, K. Asai, and K. Ishigure, Intramolecular Exciplex Formation in Ammonium-Type

Amphiphilic Polysilanes

Vol.12

207. S.J. Holder, R.C. Hiorns, N.A.J.M. Sommerdijk, S.J. Williams, R.G. Jones, and R.J.M. Nolte, Chem. Common(1998), Pages 1445-1446 The first example of a poly(ethylene oxide)-

poly(methylphenylsilylane) amphiphilic block copolymer:

vesicle formation in water

Vol.12

208. R.G. Jones, and S.J. Holder Chapter:12 Synthesis of Polysilanes by the Wurtz Reductive-Coupling

Reaction

Vol.12

209. P. Trefonas III, J.R. Damewood, Jr., and R. West, R.D. Miller,Organometallics (1985), Vol.4, Pages 1318-1319 Organosilane High Polymer: Thermochromic behavior in

Solution

Vol.12

210. Robert West, Journal of Organometallic Chemistry,(1986), Vol.300, Pages 327-346

Vol.12

Page 54: Electronic Materials Library

The Polysilane High Polymers

211. Robert .D. Miller, Chem. Rev.(1989), Vol.89, Pages 1359-1410 Polysilane High Polymers

Vol.12

212. ►

Shankar R, Saxena A, Brar AS, (2002),Vol.650(1-2), P223-230 Journal of Organometallic Chemistry

Vol.12

213. N. Wruk, J. Pelzl, K.-H. Hock, and G.A. Saunders, Philosophical Magazine B(1990), Vol.61, Pages 67-85 Elastic anomalies in the high-temperature cubic phase of

some A2 BX6 compounds

Vol.13

214. Asha Sharma, U. Louderaj, Deepak, and N. Satyamurthy, Americal Chemical Society xxx (2005) Determination of Stability and Degradation in Polysilanes

by an Electronic Mechanism

Vol.13

215. J.-L. Bredas, J. Cornil, D. Beljonne, D.A Dos Santos and Z. Shuai, Acc. Chem. Res. (1999), Vol.32, Pages, 267-276 Excited-State Electronic Sructure of Conjugated Oligomers

and Polymers: A Quantum-Chemical Approach to Optical

Phenomena

Vol.13

216. J. Park, C. Seoul, T.Kim, Current Appl. Phys.(2005),V5,P293/3 Efficiency inter-molecular energy transfer via dye-dopands

in poly(methylphenylsilylane) basedelectroluminescent

devices

Vol.13

217. M. Fujiki, Macromol. Rapid Commun.(2001),Vol.22, P539-563 Optically Active Polysilylenes: State-of-the-Art Chiroptical

Polymers

Vol.13

218. J.R. Koe, M. Fujiki, M. Motonaga, and H. Nakashima, Chem. Communication (2000), Pages 389-390 Temperature-dependent helix-helix transition of an

optically active poly(diarylsilylene)

Vol.13

219. J.R. Koe, M. Fujiki, M. Motonaga, and H. Nakashima, Jour. American Chem. Society (1999), Vol.121, Pages 9734-9735 First Optically Active Diarylpolysilanes:Facile Helical Scew

Sense Control with only (S)-Enantiopure Side Chains

Vol.13

220. J.R. Koe, M. Fujiki, M. Motonaga, and H. Nakashima, Seiji Toyoda, Materials-Chirality (2003), Vol.24, Pages 209-280 Chapter-4 Chirality in the Polysilanes

Vol.13

221. ► Preparation and Modification of Inorganic Polymers Vol.13 222. Y. Apeloig, and D. Danovich, Organometallics (1996), Vol.15,

Pages 350-360 Ionization Energies of Linear and Cycle Polysilanes,

Application of the Green’s Function Method Coupled with

Semiempirical Molecular Orbital Calculations

Vol.14

223. K. Obata, and M. Kira, Organometallics (1999), Vol.18, Pages 2216-2222 Synthesis, Structure, and Spectroscopic Properties of

Perhexyloligosilanes

Vol.14

224. T. Ichikawa, J. Kumagai, and H. Koizumi, Journal Physical Chemistry B (1999), Vol. 103, Pages 3812-3817 Optical and Electronic Properties of Polysilane Radical

Vol.14

Page 55: Electronic Materials Library

Anions

225. R.Crespo, and M. Merchan, Journal Physical Chemistry B (2000), Vol. 104, Pages 8593-8599 Electronic Excitation in a Saturated Chain: An MS-

CASPT2 Treatment of the Anti Conformer of n-Tetrasilane

Vol.14

226. J. Park, Y. Kim, J. Lee, C. Seoul, Current Applied Physics (1999), Vol.5, Pages17-74 Effect of dye dopants in poly(methylphenylsilylane) light-

emitting devices

Vol.14

227. S. Seki, Y.Koizumi, H.Habara, and S. Tagawa, J. American Chemical Society (2004), Vol. 126, Pages 3521-3528 Dynamics of Positive Charge Carrier on Si Chains of

Polysilanes

Vol.14

228. F. Schauer, I. Kuritka, S. Nespurek, Polymer Degradation and Stability (2004), Vol. 84, Pages 383-391 UV degradability of aryl-substituted polysilylenes

Vol.14

229. S. Seki, Y. Yoshida, and S.Tagawa, Macromolecules (1999) Vol. 32, Pages 1080-1086 Electronic Structure of Radical Anions and Cations of

Polysilanes with Structural Defects

Vol.14

230. N.Matsumoto, Jp. J.Appl. Phys(1998),Vol.37, Pages 5425-5436 Overview of Silicon-Based Materials

Vol.14

231. A. Watanabe, O. Ito, M. Matsuda, M. Suezawa, and K. Sumino, Jp. J.Appl. Phys.(1994),Vol.33, Pages 3133-3134 Photodegradation of Polysilanes Studied by Far-Infrared

Spectroscopy

Vol.14

232. H. Naito, Jpn. J.Appl. Phys.(2002),Vol.41, Pages 5523-5528 Photoinduced Metastable States in Amorphous Organic

Polysilanes Studied by the Transient Photocurrent

Technique

Vol.14

233. S. Seki, S. Tsukuda, Y. Yoshida, T. Kazawa, S. Tagawa, M. Sugimoto,and S. Tanaka, Jpn. J.Appl. Phys.(2003),Vol.42, Pages 4159-4161 Nanowire Formation and Selective Adhesion on Substrates

by Single-Ion Track Reaction in Polysilanes

Vol.14

234. H. Nishide, N. Yoshoika, K. Inagaki, and E. Tsuchida, Macromolecules (1988), Vol.21, Pages 3120-3122 Alkoxy-Substituted Poly (diarylsilanes): Thermochromism

and Solvatochromism

Vol.14

235. O. Ito, M. Terazima, and T. Azumi, N. Matsmoto, K.Takeda, and M.Fujino, Macromolecules (1989), V.22, Pages 1718-1722 The Photoluminescence of Poly(methylphenylsilylene). The

Origin of the Long-Wavelength Broad Band

Vol.14

236. A. Acharya, S. Seki, A.Saeki, Y. Koizumi, S. Tagawa, Chemical Physics Letter (2005), Vol. 404, Pages 356-360 Study of transport properties in fullerene-doped polysilane

films using flash photolysis time-resolved microwave

technique

Vol.14

237. V. Lucarini, J.J. Saarinen and K.-E. Peipnen, Journal of Chemical Physics (2003), Vol. 119, Pages 11095/4

Vol.14

Page 56: Electronic Materials Library

Multiply subtractive generalized Kramers-Kronig relations:

Application on third-harmonic generation susceptibility on

polysilane

238. P. Horak, P. Schauer, Cathodluminescence of Polysilanes

Vol.14

239. K. Furukawa, and K.Ebata, App.Phys.Lett.(2000),V77, P4289/3 Preparation and single molecule structure of electroactive

polysilane end-grafted on a crystalline silicon surface

Vol.14

240. Y. Nakayama, H. Inagi, and M.Zhang, Jour. of Applied Physics (1999), Vol. 86, Pages 768/6 Photobleaching and photodegradation of photoluminescence

in thin films of poly(methylphenylsilane)

Vol.14

241. S. Furukawa, and T. Koga, J. Phys.Condens. Matter (1997), Vol.9, Pages L99-L104 The conformation and packing of organopolysilane having

asymmetric side-chains

Vol.14

242. Report on manuscript entitled: “Stability in Polysilanes for Light Emitting Diodes’’

Vol.14

243. H. Kuzmany J.F. Rabolt, B.L. Farmer, and R.D. Miller, Journal Chemistry Physics (1986), Vol.{85(12)} , Pages 7413-4722 Studies of chain conformational kinetics in poly(di-n-

alkylsilanes)by spectroscopic methods 2. Conformation and

packing of poly (di-n- hexylsilane)

Vol.14

244. T.J. Cleij, J.K. King, and L.W. Jenneskens, Macromolecules (2000), Vol. 33. Pages 89-96 Band Gap Modifications in Functionalized

Poly(methylphrnylsilanes)

Vol.14

245. Macromolecules (1986), Vol. 19. Pages 2657-2660 Communications to the Editor Characterization of Poly (di-n- hexylsilane) in the Side

State. X-ray and Electron Diffraction Studies

Vol.14

246. W. J. Welsh, J.R. Damewood, Jr., R.C. West, Macromolecules (1989), Vol. 22. Pages 2947-2951 Conformational Energies and Unperturbed Chain

Dimensions of Poly(phenylmethylsilylene) and

Poly(silastyrene)

Vol.14

247. Y. Apeloig, R. Pauncz, M. Karni, R. West, W. Steiner, and D. Chapman, xxx (2003), American Chemical Society Why is Methylene a Ground State Triplet while Silylene Is a

Ground State Singlet?

Vol.14

248. A. Watanabe, M. Nanjo, T. Sunaga, and A. Sekiguchi, Journal Physical Chemistry A (2001), Vol.105, Pages 6436-643-42 Dynamics of the Excited State of Polysilane Dendrimers:

Origin of the Broad Visible Emissiom of Branched Silicon

Chains

Vol.14

249. M.J.S. Dewar, D.H. Lo, and C.A. Ramsden, Ground States of Molecules. XXIX. MINDO/3

Calculations of Compounds Containing Third Row

Elements

Vol.14

250. R. Crespo, H. Teramae, D. Antic, J. Michl, Chemical Physics Vol.14

Page 57: Electronic Materials Library

(1999), Vol. 244. Pages 203-214 Calculation of the conformational dependence of valence

and Rydberg states in n-tetrasilane

251. D.W. Macomber, M.-H. Hung, M. Liang, A.G. Vrma, and P. Madhukar, Macromolecules (1988), Vol. 21. Pages 1189-1191 Ab Initio Conformation and Ionization Potentials of

Polysilane Oligomers

Vol.14

252. A. Kohler, D.A. Dos Santos, D. Beljonne, Z. Shuai, J.-L. Bredas, A.B. Holmes, A. Kraus, K. Mullen, and R.H. Friend, Letters to Nature

Charge separation in localized and delocalized electronic

states in polymeric semiconductors

Vol.14

253. ►

Z.Shuai, D. Beljonne, R.J. Silbey and J.-L. Bredas, Phisics Review Letter (2000), Vol.84, Pages 131(4) Singlet and Triplet Exciton Formation Rates in Conjugated

Polymer Light Emitting Diodes

Vol.14

254.

H. Tachibana, and M. Matsumoto, Y.Tokura, Y. Moritomo, A. Yamaguchi, and S. Koshihara, R.D. Miller, S Abe, Physics Review B (1993), Vol.47, Pages 4363-4371 Spectra of one-dimensional excitons in polysilanes with

various backbone conformations

Vol.15

255. Y. Xu, T. Fujino, S. Watase, H. Naito, K. Oka, and T. Dohmaru, Jp. J.Appl. Phys.(1999),Vol.438, Pages 2609-2612 Enhanced Ultraviolet Emission in Polysilane Light Emitting

Diodes by Inserting a SiO2 Thin Layers

Vol.15

256. H. Suzuki, Jour. Of Luminescence(1997), V72-74, P1005-1006 Behavior of charge carriers and excitons in

poly(methylphenylsilane) as investigated by

electroluminescence from single-layer-light-emitting diodes

Vol.15

257. S. Hoshino, H. Suzuki, M. Fujiki, M. Morita, N. Matsumoto, Synthetic Metals (1997), Vol.89, Pages 221-225 Electroluminescent characteristics of one-dimensional

silicon chains in dialkyl polysilanes

Vol.15

258. I. Seguy, R. Mamy, P. Destruel, P. Jolinat, H. Bock, Applied Surface Science (2001), Vol.174, Pages 310-315 Photoemission study of the ITO/triphenylene/perylene/Al

interfaces

Vol.15

259. J. Zhang, B.-J. Wang, X. Ju, T. Liu, T.-D. Hu, Polymer (2001), Vol.42, Pages 3697-3702 New observations on the optical properties of PPV/TiO2

nanocomposites

Vol.15

260. K.J.Ciuffi, H.C. Sacco, J.B. Valim, C.M.C.P. Manso, O.A. Serra, O.R. Nascimento, E.A. Vidoto, Y. Imamoto, Journal of Non-Crystalline Solids (1999), Vol.247, Pages 146-152 Polymeric organic-inorganic hybrid material containing

iron(III) porphyrin using sol-gel process

Vol.15

261. D.-H. Hwang, I.-N. Kang, J.-I. Lee, L.-M. Do, H.Y. Chu, T. Zyung, H.-K. Shim, Polymer Bulletin (19987), V41, P275-282 Synthesis and properties of silyl-substituted PPV derivateve

through two different precursor polymers

Vol.15

Page 58: Electronic Materials Library

262. E. Bellmann, S.E. Shaheen, S. Thayumanavam, S. Barlow, R.H. Grubbs, S.R. Marder, B. Kippelen and N. Peyghambarian, Chem. Materials (1998), Vol.10, Pages 1668-1676 New Triarylamine-Containing Polymers as Hole Transport

Materials in Organic Light-Emitting Diodes: Effect of

Polymer Structure and Cross-Linking on Device

Characteristics

Vol.15

263. X.L. Ji, B. Li, S. Jiang, D. Dong, H.J. Zhang, X.B. Jing, B.Z. Jiang, J.of Non-Crystalline Solids (2000), Vol.275, Pages 52-58 Luminescent properties of organic-inorganic hybrid

monoliths containing rare-earth complexes

Vol.15

264. V. Bekiari, G. Pistolis, and P. Lianos, Chem. Materials (1999), Vol.11, Pages 3189-3195 Intensely Luminescent Materials Obtained by Combining

Lanthanide Ions 2,2’-Bipyridene and Poly(ethylene glycol)

in Various Fluid or Soild Environments

Vol.15

265. A. Niko, S. Tasch, F. Meghdadi, C. Brandstatter, G. Leising, Optical Materials (1998), Vol.9, Pages 188-191 White light and red-green-blue (RGB) electroluminescence

by light color-conversdion

Vol.15

266. Y.J. Fu, T.K.S. Wong, G.M. Wang, X. Hu, H.X. Zhang, Z.S. Gao, M.H. Jiang, Chem. Physics Lett. (2001), V343, P201-204 Electroluminescent properties of a derivative of

quinquepyridene

Vol.15

267. C.I. Chao, and S.A. Chen, Appl.Phys. Lett.(1998),V73, P426/3 White light emission from exciplex in a bilayer device with

two blue light-emitting polymers

Vol.15

268. S.F. Liu, C. Seward, H. Aziz, N.X. Hu, Z. Popovic and S. Wang, Organometallics (2000), Vol.19, Pages 5709-5714 Synthesis Structures and

Luminescence/Electroluminescence of BPh2 (mqp), Al(CH3 )

(mqp)2 and Al(mqp)3 {mqp =2-(4-Methylquinolinyl) –2-

phenolato}

Vol.15

269. C. Seward, N.X. Hu, and S. Wang, Journal Chem. Society Dalton Trans.(2001), Vol.-------, Pages 134-137 1-D Chain and 3-D grid green luminescent terbium(III)

coordination polymers: { Tb(O2 CPh )3 (CH3 OH ) 2 (H2 O)}n

and {Tb2(O2 CPh )6 –(4,4’- bipy) }n

Vol.15

270. M. Iwasaki, N. Sato, J. Kuraki, and S. Ito, Journal of Sol-Gel Science and Technology (2000), Vol. 19, Pages 357-360 Photoreduction of Europium (III) in Sol-Gel Derived

Organic-Inorganic Hybrid Materials

Vol.15

271. A.-C. Franville, R. Mahiou, D. Zambon, J.-C. Cousseins, J.-C. Cousseins, Solid State Sciences (2001), Vol.3, Pages 211-222 Molecular design of luminescent organic-inorganic hybrid

materials activated by europium (III) ions

Vol.15

272. L.-H. Wang, W. Wang, W.G. Zhang, E.T. Kang, and W. Huang, Chem. Materials (2000), Vol.12, Pages 2212-2218 Synthesis and Luminescence Properties of Novel

Eu-Containing Copolymers Consisting of Eu(III)-Acrylate-

Vol.15

Page 59: Electronic Materials Library

β-Diketonate Complex Monomers and Methyl

Methacrylates

273. W.M. A. Bik, R.N.H. Linssen, F.H.P.M. Habraken, and W.F. van der Weg, A.E.T. Kuiper, App.Phys. Lett.(1990),V{56(25)} Diffusion of hydrogen in low- pressure chemical vapor

deposited silicon nitride films

Vol.15

274. K.A. Mauritz, Mat. Science and Engg (1998), Vol.C6,P121-133 Organic-Inorganic hybrid materials: perfluorinated

ionomers as sol-gel polymerization templates for inorganic

alkoxides

Vol.15

275. B.J. Jin, S.H. Bae, S.Y. Lee, S. Im, Materials Science and Engineering (2000), Vol.B71, Pages 301-305 Effects of native defects on optical and electrical properties

of ZnO prepared by pulsed laser deposition

Vol.15

276. B.J.Jin, S. Im, S.Y. Lee,Thin Solid Films(2000),V366,P107-110 Violet and UV luminescence emitted from ZnO thin films

grown on sapphire by pulsed laser deposition

Vol.15

277. A. van Dijken, E.A. Meulenkamp, D. Vanmaekelberg, and A. Meijerink, J. Phys. Chem. B (2000), Vol.104. Pages, 4355-4360 Influence of Adsorbed Oxygen on the Emission Properties

of Nanocrystalline ZnO Particles

Vol.15

278. J. Choi, M. Chipara, B. Xu, C.S. Yang, B. Doudin, P.A. Dowben, ChmIcal Phys. Lett.(2001), Vol.343, Pages 193-200 Comparision of the π-conjugated ring orientations in

polyaniline and polypyrrole

Vol.15

279. E.Berkovich, J. Klein, T. Sheradsky, E.R. Silcoff, K.T. Ranjit, I. Willner, G. Nakhmanovich, V. Gorelik, Y. Eichen, Synthetic Metals (1999), Vol.107, Pages 85-91 Adjustable electroluminescence: blue-green to red organic

light-emitting diodes based on novel poly-non-conjugated

oligomers

Vol.15

280. G. Leising, F. Meghdadi, S. Tasch, C. Brandstatter, W. Graupner, G. Kranzelbinder, Synthetic Metals (1997), Vol.85, Pages 1209-1212 Light emission from conjugated materials generated by

charge carrier injection and photoluminescence

Vol.15

281. S. Hoshino, H. Suzuki, M.Fujiki, M. Morita, N. Matsumoto, Synthetic Metals (1997), Vol.89, Pages 221-225 Electroluminescent characteristics of one-dimensional

silicon chains in dialkyl polysilanes

Vol.15

282. A. Fujii, K. Yoshimoto, M. Yoshida, Y. Ohmori, K. Yoshino, H. Ueno, M. Kakimoto, and H. Kojima, Jpn. J. Appl. Physics (1996) Volume-35, Pages 3914-3917 Electroluminescent Diodes Utilizing Polysilanes

Vol.15

283. K. Ebihara, S.Y. Koshihara, T. Miyazawa, and M. Kira, Jpn. J. Appl. Physics(1996) Volume-35, Pages 1278-1280 Polysilane-Based Polymer Diodes Emitting Ultraviolet

Light

Vol.15

284. T. Senda, Y.J. Cho, T. Hirakawa, H. Okamoto, H. Tikakura, and Y. Hamakawa, Jpn. J. Appl. Phys.(2000)V39, Pages 4716-

Vol.15

Page 60: Electronic Materials Library

4720 Development of Full-Color Display Combined with -

Ultraviolet-Electroluminescence/Photoluminescence

Multilayered Thin Films

285. E.J.W. List, S. Tasch, C. Hochfilzer, G. Leising, P. Schlichting, U. Rohr, Y. Greets, U. Scherf, K. Mullen, Optical Materials (1998), Vol. 9, Pages 183-187 Efficient color tuning (blue, red-orange, white) of light

emitting diodes by excitation energy transfer

Vol.15

286. T. Ahn, S.Y. Song, and H.K. Shim, Macromolecules(2000), Vol.33, Pages 6764-6771 Highly Photoluminescent and Blue-Green

Electroluminescent Polymers: New Silyl-and Alkoxy-

Substituted Poly(p-phenylenevinylene) related Copolymers

Containing Carbazole or Fluorene Ground

Vol.15

287. Y.Xiao, W.L. Yu, Z.K. Chen, N.H.S. Lee, Y.H. Lai, W. Haung, Thin Solid Films (2000), Vol. 363, Pages 102-105 Synthesis and characterization of a novel light-emitting

copolymer with improved charge-balancing property

Vol.15

288. J. Pei, W.L. Yu, W. Huang, A.J. Heeger, Synthetic Metals (1999), Vol.105, Pages 43-47 Poly[1,4-bis{2-(4-hexylthiophene)}-2,5-dimethylphenylene]:

a new conjugated electroluminescent polymer

Vol.15

289. P.W.M. Blom, and M.J.M de Jong, IEEE J. Selected Topics in Quantum Electronics (1998), Vol.4, Pages 105-11 Electrical Characterization of Polymer Light-Emitting

Diodes

Vol.15

290. H. Suzuki, S. Hoshino, C.H. Yuan, M. Fujiki, S. Toyoda, and N. Matsumoto, IEEE J. Selected Topics in Quantum Electronics (1998), Vol.4, Pages 129-136 Near-Ultraviolet Light-Emitting Diodes Based on σ-

Conjugated Linear Silicon-Backbone Polymers

Vol.15

291. Y. Ohmori, M. Uchida, K. Muro, and K.Yoshino, Blue Electroluminescent Diodes Utilizing

Poly(alkylfluorene)

Vol.15

292. R. Hattori, T. Sugano, J. Shirafuji and T. Fujiki, Room Temperature Ultraviolet Electroluminescence from

Evaporated Poly(dimethylsilane) Film

Vol.15

293. M. Hamaguchi, and K. Hoshino, Jpn. J. Appl. Phys.(1995), Vol. 34, Pages 587-589 Blue Electroluminescence from Poly(2,5-diheptyloxy-1,4-

phenylene)

Vol.15

294. A. Fujiki, K. Yoshimoto, M. Yoshida, Y. Ohmori, and K. Yoshino, Ultraviolet Electroluminescent Diode Utilizing

Poly(methylphenylsilane)

Vol.15

295. P.W.M. Blom, H.C.F. Martens, J.N. Huiberts, Synthetic Metals (2001), Vol.121, Pages 1621-1624 Charge transport in polymer light-emitting diodes

Vol.15

296. O. Inganas, L.S. Roman, F. Zhang, D.M. Johansson, M.R. Vol.15

Page 61: Electronic Materials Library

Andersson, J.C. Hummelen, Synthetic Metals (2001), Vol.121, Pages 1525-1528 Recent progress in thin film organic photodiodes

297. S.R. Farrar, A.E.A. Contoret, M.O. Neill, J.E. Nicholls, A.J. Eastwood, S.M. Kelly, Synthetic Metals (2001), Vol.121, Pages 1657-1658 Characterisation of pulsed-laser-deposited organic

electroluminescent compounds for organic light-emitting

diodes

Vol.15

298. ►

S.R. Farrar, A.E.A. Contoret, M.O. Neill, and J.E. Nicholls, Applied Physics Letters (2000), Vol.76, Pages 2553/3 Pulsed-laser deposition for organic electroluminescent

device applications

Vol.15

299. H. Hayashi, T. Kurando, and Y. Nakayama, Jpn. J. Appl. Phys.(1997), V36, Pages 1250-1255 Prephotobleaching Process in Polysilane Films

Vol.16

300. Y. Nakayama, H. Inagi, and M. Zhang, Journal of Applied Physics (1999), Vol.86, Pages 768/6 Photobleaching and Photodegradation of

photoluminescence in thin films of poly(methylphenylsilane)

Vol.16

301. H. Hayashi, T. Kurando, K. Oka, T. Dohmaru, and Y. Nakayama, Jpn. J. Appl.Phys.(1996),Vol. 35, Pages 4096-4100 Prephotobleaching Process in Polysilane Films

Vol.16

302. S. Ninomiya, Y. Ashihara, and Y. Nakayama, Journal of Applied Physics (1999), Vol.86, Pages 768/6 Reduction of photoscission of σ bonds in polysilanes by

fullerene doping

Vol.16

303. Polymer Letters Edition. Pages 823-828 Organosilane High Polymers: Electronic Spectra and

Photodegradation

Vol.16

304. E. Hennebicq and C. Deleener, J.-C. Bredas, G.D. Scholes, D. Beljonne, The Jour. of Chem. Phys.(2006),Vol.125,Pages 125/5 Chromophores in phenylenevinylene-based conjugated

polymers: Role of conformational kinks and chemical

defects

Vol.16

305. Y. Fang, S. Gao, X. Yang, Z. Shuai, D. Beljonne, J.L Bredas, Synthetic Metals (2004), Vol.141, Pages 43-49 Charge-transfer states and white emission in organic light-emitting diodes: a theoretical investigation

Vol.16

306. T.H. Maiman, Physical Rev. (1961), Vol.123, Pages 1145-1147 Stimulated Optical Emission in Fluorescent Solids: I.

Theoretical Considerations

Vol.16

307. H. Samelson, A. Lempicki, and C. Brecher, The Journal of Chemical Physics (1964), Vol. 40, Pages 2553-2558 Laser Phenomena in Europium Chelates. II. Kinetics and

Optical Pumping in Europium Benzoylacetonate*

Vol.16

308. H.Ban, and K. Sukegawa, Journal of Appled Polymer Science (1987),Vol.33, Pages 2787-2793 The Importance of Organosilane Polymer Photo-Oxiation in

Resist Pattern Fabrication

Vol.16

Page 62: Electronic Materials Library

309. H.Ban, and K. Sukegawa, Journal of Appled Polymer Science (1988),Vol.26, Pages 521-527 Molecular Structure and Photoreaction of

Poly(methylpropylsilane)

Vol.16

310. N.Kamata, S. Aihara, W. Ishizaka, M. Umeda, D. Terunuma, K. Yamada, S. Furukawa, Journal of Noncrystalline Solids (1998), Vol.227-230, Pages 538-542 Temperature-dependent photoluminescence and

electroluminescence properties of polysilanes

Vol.16

311. T. Azumi, The Journal of Chemical Physics (1971), Vol. 54, Pages 85-91 Defect Phosphorescence of Pyrazine Crystal. II. The Nature

of the Defect

Vol.16

312. T. Azumi,and Y. Nakano, The Journal of Chemical Physics (1969), Vol. 51, Pages 2515-2527 Defect Phosphorescence of Pyrazine Crystal

Vol.16

313. H.Fu, G. Li, D. Chen, H. Ma, M. Xie, S. Chen, Journal of Appled Polymer Science (1997),Vol.66, Pages 1515-1519 Studies on the Laser Degredation of the CHCl3 Solution of

Polysilane

Vol.16

314. L. Biczok, A. Cser, K. Nagy, Journal of Photochemistry and Photobiology A: Chemistry (2001), Vol.146, Pages 59-62 Substituent and solvent effects on the photophysical properties of 3-azafluorenone derivatives

Vol.16

315. J.L. Male, B.E. Lindfors, K.J. Covert, and D.R. Tyler, Macromolecules (1997), Vol. 30, Pages 6404-6406 Cage Effects in the Photochemical Degradation of

Polymers: Studies of Model Complex with Different Chain

Lengths

Vol.16

316. D.Chen H.Hu, Macromol.Chem.Phys.(1994),V195,P2981-2987 Studies on the behavior of photodegradaions of poly

(cyclohexylmethylsilane)

Vol.16

317. H. Sakurai, J. of Organometallic Chem.(1980),V200, P261-286 Spectra and some reactions of Organopolysilanes

Vol.16

318. H. Wang, X. Tao, and E. Newton, Polymer International (2004), Vol.53, Pages 20-26 Thermal degradation kinetics and lifetime prediction of a

luminescent conducting polymer

Vol.16

319. Asha Sharma, U.Lourderaj, Deepak, and N. Satyamurthy, J. Physical Chemistry B (2005), Vol.109, Pages 15860 to 15867 Determination of Stability and Degradation in Polysilanes

by an ElectronicMechamnism

Vol.16

320. M.F. Broglia, S.G. Bertolotti, C.M. Previtali, H.A. Montejano, Journal of Photochemistry and Photobiology A: Chemistry xxx (2005), xxx-xxx Solvatochromic effects on the fluorescence and triplet-triplet absorption of phenosafranine in protic and aprotic

solvents

Vol.16

321. R.V. Todesco, and P.V. Kamat, Macromolecules (1986), Vol. 19, Pages 196-200

Vol.16

Page 63: Electronic Materials Library

Excited-State behavior of Poly[dimethylsilylene –co-

methyl(1-naphthyl)silylene ]

322. P.P. Gaspar, D. Holten, and S. Konieczny, Acc. Chem. Res.(1987), Vol.20, Pages 329-336 Laser Photolysis of Silylene Precursors

Vol.16

323. A.H. Amena, L.T. Khan, R.H. Friend, and A. Kohler, Physical Review B (2005), Vol.71, Pages 241302/4 Morphology dependence of the triplet excited state

formation and absorption in polyfluorene

Vol.16

324. M. Banasiewicz, O. Morawski, D. Wiacek, B. Kozankiewicz, Chemical Physics Letters (2005), Vol.414, Pages 374-377 Triplet population and depopulation rates of single

terrylene molecules in p-terphenyl crystal

Vol.16

325. S. Seki, K.R. Cromack, A.D. Trifunac, Y. Yoshida, S. Tagawa, K. Asai, and K. Ishigure, J. Physical Chemistry B (1998), Vol.102, Pages 8367-8371 Stability of Radicals in Aryl-Substituted Polysilanes with Linear and Planar Silicon Skeleton Structures

Vol.16

326. H. Devoe, The Journal of Chemical Physics (1965), Vol. 43, Pages 3199-3208 Optical Properties of Molecular Aggregates. II. Classical

Theory of the Refraction, Absorption, and Optical Activity

of Solutions and Crystals

Vol.16

327. H. Devoe, The Journal of Chemical Physics (1964), Vol. 41, Pages 393-400 Optical Properties of Molecular Aggregates. II. Classical

Model of Electronic Absorption and Refraction,

Vol.16

328. R. West, L.D. David, P.I. Djurovich, K.L. Stearley, K.S.V.Srinivasan, and H.Yu, Journal of American Chemical Society (1981), Vol. 103, Pages 7352-7354 Phenylmethylpolysilanes: Formable Silane Copolymers with

Potential Saemiconducting Properties

Vol.16

329. G.Yu, D.Shen, Y. Liu, D. Zhu, Chemical Physics Letters (2001), Vol.333, Pages 207-211 Fluorescence stability of 8-hydroxyquinoline aluminum

Vol.16

330. R.F. Bianchi, D.T. Balogh, M. Tinani, R.M.Faria, E.A. Irene, J. Polymer Science:Part:Bpolymer Phys.(2004), V42, P1033-1041 Ellipsometry Study of the Photo-Oxidation of Poly(2-

methoxy-5-hexyloxy)-p-phenylenevinylene

Vol.16

331. M.Kostoglou, PhysicsA (2003), Vol.320, Pages 84-96 Exact self-similar solutions to the fragmentation equation

with homogeneous discrete kernel

Vol.16

332. R.M. Ziff and E.D.McGrady, Macromolecules(1986), Vol.19, Pages 2513-2519 Kinetics of Polymer Degradation

Vol.16

333. B.J. McCoy and G.Madras, AIChE Jour.(1997), V43, P802-810 Degradation Kinetics of Polymers in Solution: Dynamics of

Molecular Weight Distributions

Vol.16

334. H. Becker, A. Lux, A.B. Holmes, R.H.Friend, Sythetic Metals (1997), Vol.85, Pages 1289-1290

Vol.16

Page 64: Electronic Materials Library

PL and EL Quenching due to the Thin Metal Films in

Conjugated Polymers and Polymer LEDs

335. H.Y. Low, Thin Solid Films (2002), Vol.413, Pages 160-166 Photo and photo-oxydative degradations of ploy (phenylene

vinylene) derivatives

Vol.16

336. V.G. Gobato, A. Maretta, and F.E.G. Guimaraes, Applied Physics Letters (2002), Vol.81, Pages 942/3 Photoinduced photoluminescence intensity enhancement in

poly(p-phenylene vinylene) films

Vol.16

337. ►

Satyendra Kumar, Vivek Shukla, Ashutosh Tripathi, Thin Solid Films (2005), Vol.477, Pages 240-243 Ellipsometric investigations on the light induced effects on

tris(8-hydroxyquinoline) Aluminum (Aiq3)

Vol.16

338. N.C.Greenham, I.D.W. Samuel, G.R. Hayes, R.T. Phillips, Y.A.R.R. Kessener, S.C. Moratti, A.B. Holmes, R.H. Friend, Chemical Applied Physics Letters (1995),Vol.241, Pages 89-96 Measurement of absolute photoluminescence quantum

efficiencies in conjugated polymers

Vol.17

339. C.W. Tang, and S.A. VanSiyke, Applied Physics Letters (1987), Vol.{51(12)}, Pages 913/3 Organic electroluminescentdiodes

Vol.17

340. Y.Hong and J.Kanicki, Review of Scientific Instruments (2003), Vol.74, Page3572/4 Integrating sphere charge coupled device-based

measurement method for organic light-emitting devices

Vol.17

341. D. Zou, M.Yahiro, T.Tsutsui, Syn.Metals (1997),Vol.91,P191/3 Study on the degradation mechanism of organic light-

emitting diodes (OLEDs)

Vol.17

342. S.Toyoda, and M. Fujiki, Macromolecules (2001),V34,P2630/4 Origin of Broad Visible Photoluminescence from

Poly(alkylarylsilylene) Derivatives

Vol.17

343. T. Karatsu, T. Shibata, A. Nishigaki, A. Kitamura, Journal of Physical Chemistry B (2003), Vol.107, Pages 12184-12191 π- π and σ- π Interactions in ά,ω-Di-(9-anthryl) and Di-(1-

naphthyl) Oligosilanes Studied by Time-Resolved

Fluorescence in Solution

Vol.17

344. T. Endo, Y. Sugimoto, K. Takeda, K. Shiraishi, Synthetic Metals (1999), Vol.98, Pages 161-172 Electronic structures of polysilanes having pyrrole and

thiophene groups

Vol.17

345. F.C. Grozema, L.D.A. Siebbeles, J.M. Warman, S. Seki, S. Tagawa and U. Scherf, Adv.Materials(2002),Vol.14, Page228/4 Hole Conduction along Molecular Wires: σ-Bonded Silicon

Versus π-Bond-Conjugated Carbon

Vol.17

346. C. DE Rosa, Materials-Chirality (2003), Vol.24, Pages 71-155 Chapter-2 Chain Conformation,Crystal Structures and Structural

Disorder in Stereoregular Polymers

Vol.17

347. X. Jiang, and R.A. Register, K.A.Killeen, and M.E. Thompson, F. Pschenitzka, T.R. Hebner, and J.C. Sturm, Journa of Applied

Vol.17

Page 65: Electronic Materials Library

Physics (2002), Vol. 91, Pages 6717/8 Effect of carbazole-oxadizole excited-state complexes on the

efficiency of dye-doped light-emitting diodes

348. Y.-M.Wang, F. Teng, Z. Xu, Y.-B. Hou, Y.-S. Wang, X.-R. Xu, Applied surface Science (2005), Vol.243, Pages 355-359 Enhancement of electroplex emission by using multi-layer

device structure

Vol.17

349. S.P. Singh, and Y.N. Mohapatra, M. Qureshi, and S.S. Manoharan, Appl. Phys. Letters (2005), Vol.86, Pages 113505 White organic light-emitting diodes based on spectral

broadening in electroluminescence due to formation of

interfacial exciplexes

Vol.17

350. A.C. Morteani, P.K.H. Ho, R.H. Friend, and C. Silva, Applied Physics Letters (2005), Vol.86, Pages 163501 Electric field-induced transition from heterojunction to bulk

charge recombination in billayer polymer light-emitting

diodes

Vol.17

351. Y.Wang, F. Teng, Z. Xu, , Y. Hou, Y.Wang, X. Xu, Europiun Polymer Journal (2005), Vol. 41, Pages 1020-1023 Electroplex emission from a blend of poly(N-vinylcarbazole)

and 2,9-dimethyl-4,7-diphenyl-1, 10-phenanthroline

Vol.17

352. Y.-M.Wang, F. Teng, Z. Xu, Y.-B. Hou, S.-Y. Wang, , Applied surface Science (2004), Vol.236 Pages 251-255 White emission via electroplex formation at poly(N-

vinylcarbazole)/ 2,9-dimethyl-4,7-diphenyl-1, 10-

phenanthroline interface

Vol.17

353. ►

Chemical Reviews,(1989), Vol.89, Pages 1361-1409 III Synthesis A Wurtz-Type Coupling of Dichlorosilanes

Vol.17

354. K. Maeda, K. Shimizu,,M. Yoshida, K. Sakamoto, and H. Sakurai, Jour. Phys. Chem. (1993), Vol.97, Page 12144-12146 Phosphorescence from the Delocalized Triplet State of

Polysilylenes

Vol.18

355. C. Walsh, W.P. Ambrose, D.M. Burland, R.D.Miller, and D.S.Tinti, J.of Inorganic-Organic Pol.(1992), Vol.2. P285-295 Phosphorescence Emission from Poly(Di-n-hexylsilane) in a

Glass: Temperature Dependence and Optically Detected

Magnetic Resonance (ODMR) Spectra

Vol.18

356. I.A. Harrah, and J.M.Zeigler, Journal of Polymer science: Part C: Polymer Letters (1987), Vol. 25. Pages 205-207 Phosphorescence Growth from Photolysed

Poly(phenylmethylsilane)

Vol.18

357. K. Takeda, H. Teramae, and N. Matsumoto, Journal of American chem. Society (1986), Vol. 108, Pages 8186-8190 Electronic Structure of Chainlike Polysilane

Vol.18

358. O.Ito, M. Terazima, and T. Azumi, Journal of American chem. Society (1990), Vol. 112, Pages 444-445 Phosphorescence and Optical Detection of Magnetic

Resonance Studies of Poly(methylpropylsilylene)

Vol.18

359. M. Fujiki, Chem. Physics Letters.(1992), Vol.98, Page177-182 Vol.18

Page 66: Electronic Materials Library

Structural defects in poly(methylphenylsilylene)

360. H. Suzuki, Mol.Cryst.Liq.Cryst. (1997),Vol. 294, Pages127-132 Ligtht-Emitting Diodes Based on Silicon-Backbone

Polymers

Vol.18

361. F.C. Grozema, L.D.A. Siebbeles, J.M. Warman, S. Seki, S. Tagawa and U. Scherf, Adv. Materials(2002),Vol14, Page228/4 Hole Conduction along Molecular Wires: σ-Bonded Silicon

Versus π-Bond-Conjugated Carbon

Vol.18

362. H. Suzuki, S. Hoshino, C.-H. Yuan, M. Fujiki, S. Toyoda, N. Matsumoto, Thin solid Films (1998),Vol. 331, Pages 64-70 Near-ultraviolet elctroluminescence from polysilanes

Vol.18

363. Y.R. Kim, M. Lee, J.R.G. thorne, R.M. hochstrasser, J.M.Zeigler, Chemical Phys. Letters.(1988),Vol.145, Page75-80 Picosecond Reorientations of the transition Dipoles in

Polysilanes using Fluorescence Anisotropy

Vol.18

364. J.R.G. thorne, R.M. hochstrasser, and J.M.Zeigler, Journal of Physical Chemistry Letters.(1988), Vol.92, Pages 4275-4277 Photophysics of the Phases of Poly(di-n-hexylsilane)

Vol.18

365. L.A. Harrah, and J.M.Zeigler, Macromol(1987), V20, P601-608 Electronic Spectra of Polysilanes

Vol.18

366. P.K. Mascharak, Inorganic Chemistry (1986),V25,Page247-248 Delayed fluorescence and Triplet-Triplet Annihilationin a

Diplatinate(II) Pyrophosphite Complex

Vol.18

367. H. Kuzmany, J.F. Rabolt, B.L. Farmer, and R.D.Miller, Journal of Chemical Physics (1986), Vol.{85(12)}, Pages 7413-7422 Studies of chain conformational kinetics in poly(di-n-

alkylsilanes) by spectroscopic methods 2. conformation and

packing of poly(di-n-hexylsilane)

Vol.18

368. N. Tanigaki, H. Kyotani, M. Wada, A. Kaito, Y. Yoshida, E.-M. Han, K. Abe, K. Yase, Thin Solid Films (1998),V331,P229-238 Oriented thin films of conjugated polymers: polysilanes and

polyphenylenes

Vol.18

369. A. Zambell, P.Longo, C. Pellecchia and A. Grassi, Macromolecules (1987), Vol.20, Pages 2037-2039 Electronic Spectra of Hindered Silyl-andOrgano-

Substituted Polysilylenes

Vol.18

370. ►

C.-H. Yuan, and R. West, Macromolecules (1988), Vol.31, Pages 1087-1092 AmorphousPoly[(alkoxy-n-alkyl)methylsilane]s:

and Crystalline sPoly[bis(alkoxy-n-alkyl)silane]s:The Effect

of Side-Chain flexibility on the Thermochromic Transition

Vol.18

371. H. Tachikawa, Journal of Physical Chemistry A(1999), V103, Pages 2501-2505 Electron Localization in Polysilane Radical Ions

Vol.19

372. J.W. Mintmire, Physical Review B (1989), Vol.39, Pages 13350/7 Conformational effects in organopolysilane: A first-

principles approach

Vol.19

373. C.-H. Ottosson, and J. Michi, Journal of Physical Chemistry A (2000), V104, Pages 3367-3380

Vol.19

Page 67: Electronic Materials Library

Conformers of n-Si6 Me14 : Ab Initio, Molecular Mechanism,

and Additive Increment Methods

374. K. Takeda, and N. Matsumoto, M. Fukuchi, Physical Review B (1984), Vol.30, Pages 5871/6 Energy-band structure of chainlike polysilane(SiH2 )n alloys

Vol.19

375. J.T. Nelson, and W.J. Pietro, Journal of Physical Chemistry (1988), Vol.92, Pages 1365-1371 Mechanism of Extensive Electron Delocalization in Linear

Polysilanes

Vol.19

376. D.W. Macomber, M.-H. Hung, M. Liang, A.G. Verma, and P.Madhukar, Macromolecules (1988), Vol.21, Pages 1189-1191 Ab Initio Conformation and Ionization Potentials of

Polysilane Oligomers

Vol.19

377. K.A.Klingensmith, J.W. Downing, R.D. Miller, and J. Michi, Journal American Chem.Society (1986), Vol. 108, Pages 4738-7441 Electronic Excitation in Poly(di-n-hexylsilane)

Vol.19

378. P. Toman, Pages 1-5 Quantum Mechanical Calculations of the properties of

Oligosilanes

Vol.19

379. K. Takeda, H. Teramae, and N. Matsumoto, Journal American Society (1986), Vol. 108, Pages 8186-8190 Electronic Structure of Chainlike Polysilane

Vol.19

380. D.J.Carlsson, C.J.B. Dobbin, and D.M. Wiles, Macromolecules (1985), Vol.18, Pages 1793-1795 Conformational Analysis of Poly(di-n-hexylsilane)

Vol.19

381. S. Miura, H. Naito, Y. Kanemitsu, Y. Matsuura, K. Matsukawa, H. Inoue, Thin Solid Films (2003),Vol.438-439, Pages 253-256 Photocarrier generation at nano-interfaces in organic

polysilane-titania matrix hybrid thin films

Vol.19

382. M.S. Liu, J. Luo, and A.K-Y. Jen* xxx Am. Chem. Soc(2000)2000 Efficient Green-Light-Emitting Diodes from Silole-

Containing Copolymer

Vol.19

383. S. Furukawa, Thin Solid Films(1998),V331, Pages 222-228 Structure and orientation control of organopolysilanes and

their application to electronic devices

Vol.19

384. S. Seki, K.R. Chromack, A.D. Trifunac, Y. Yoshida, S. Tagawa, K. Asai, and K. Ishigure, Journal of Physical Chemistry (1998), V102, Pages 8367-8371 Stability of Radicals in Aryl-Substituted Polysilanes with

Linear and Planar Silicon Skeleton Structures

Vol.19

385. S. Seki, Y.Koizumi, T. Kawaguchi, H. Habara, and S. Tagawa, Dynamics of Positive Charge Carrier on Si Chains of

polysilanes

Vol.19

386. Y. Matsui, S. Seki, T. Iwamoto, and S. Tagawa, chemistry Letters (1998), Pages 861-862 Electronic Structure of Polysilanes Studied by Femtosecond

Laser Flash Photolysis

Vol.19

387. Y. Matsui, K. Nishida, S. Seki, Y. Yoshida, S. Tagawa, K. Vol.19

Page 68: Electronic Materials Library

Yamada, H. Imahori, and Y. Sakata, Organometallics (2002), Vol.21, Pages 5144-5147 Direct Observation of Intramolecular Electron Transfer

from Excess Electrons in a σ-Conjugated Main Chain to a

Porphyrin Side Chain in Polysilanes Having a

Tetraphenylporphyrin Sid Chain by the Pulse Radiolysis

Technique

388. H. Tachikawa, Chem. Physics Lett. (1997), Vol.265, P455-459 Electronic structure of linear polysilane radical cations in

ground and low-lying excited states: a theoretical study

Vol.19

389. S. Seki, Y. Matsui, Y. Yoshida, and S. Tagawa, J.R. Koe, M. Fujiki, J. of Phys.Chemistry B (2002), V106, Pages 6849-6852 Dynamics of Charge Carriers on Poly[bis(p-

alkylphenyl)silane]s by Electron Beam Pulse Radiolysis

Vol.19

390. V.R. McCray, F. Sette, C.T. Chen, A.J. Lovinger, and M.B. Robin, J. Stohr, J.M. Zeigler, Journal of Physical Chemistry (1988), V{85(9)}, Pages 5925-5933 Polarization effect in the valence and inner-shell spectra of

poly(di-n-hexylsilane)

Vol.19

391. ►

V. Balaji, and J. Michl, Polyhedron (1991), V.10, P 1265-1284 Singlet Excitation in Polysilanes: ab Initio Calculations on

Poligosilane Models

Vol.19

392. F. Li, J. Feng, S. Liu, Syn. Metals (2003), V103, P 1103-1104 Degradation of organic light-emitting devices under

different driving model

Vol.20

393. D.Zou, M.Yahiro, and T.Tsutsui, Jp.J.Phys.(1998),V37,P1406/3 Improvement of Current-Voltage Characteristics in

Organic Light Emitting Diodes by Application of Reversed-

Bias Voltage

Vol.20

394. J. Liu, L. Ma, and Y. Yang, J.of Appl.Phys.(2000),V88, P605/5 Device performance and polymer morphology in polymer

light emitting diodes: The control of device electrical

properties and metal/polymer contact

Vol.20

395. P.Cusumano, F. Buttitta, A.Di Cristofalo, C. Cali, Syn. Metals (2003), Vol. 139, Pages 657-661 Effect of driving method on the degradation of organic light

emitting diods

Vol.20

396. C. Giebeler, S.A. Whitelegg, D.G. Lidzey, P.A. Lane, and D.D.C. Bredas, J.Appl.Phys.Lett.(1999), Vol.75, Pages 2144/3 Device degradation of polymer light emitting diods studied

by electroabsorption measurments

Vol.20

397. N. Tessler, N.T. Harrison, D.S. Thomas, and R.H. Friend, Applied Physics Letters (1998), Vol.73, Pages 732/3 Current heating in polymer light emitting diodes

Vol.20

398. K.Zhang, L. Ke, F. Zhu, B. LingLow, and S.Chua, IEEE(2000) Aging Effect on Balance of Carrier Injection in Polymer

Light-Emitting Diodes

Vol.20

399. G.G. Andersson, M.P.de Jong, F.J.J. Janssen, J.M. Sturm, L.J. van lJzendoorn, A.W. Denier van der Gon, M.J.A. de Voigt and H.H. brongersma, Jour. of Appl.Physcs (2001),Vol.90, P1376/7

Vol.20

Page 69: Electronic Materials Library

Influence of a partially oxidized calcium cathode on the

performance of polymeric light emitting diodes

400. P. Dannetun, M. Logdlund, C. Fredriksson, R. Lazzaroni, C.Fauquet and S. Stafstrom, C.W. Spangler, J.L.Bredas, W.R. Salaneck, Jour. Of Chemical Physics(1994),V100, P6765-6771 Reactions of low work function metals Na, Al, and Ca on α

ω-diphenyltetradecaheptaene. Implications for

metal/polymer interfaces

Vol.20

401. Y. He, J.K. Politis, H. Cheng, M.D. Curtis, and J. Kanicki, IEEE transactions on Electron devices(1997),V44, P1282-1288 Characterization and Stability of Light-Emitting Diodes

Based on Poly(bithiazole)’s

Vol.20

402. W. Graupner, G. Leditzky and G. Leising, U. Scherf, Physical Reviwe B (1996), Vol. 54, Pages 7610-7613 Shallow and deep traps in conjugated polymer of high

intrachain order

Vol.20

403. Z.Z. Lin, J.X. Yin, Z.W. Qing, Z.B. Xin, and X.S. Hong, Journal Physics D: Appl. Phys.(2001),Vol. 34, Pages 3083-3087 A white organic light emitting diode with improved stability

Vol.20

404. G. Yu, Y. Liu, S. Zhou, F. Bai, P. Zeng, M. Zeng X. Wu, and D. Zhu, Physical Review B (2002),Vol.65, Pages 115211-1to5 Anomalous current-voltage characteristics of polymer light-

emitting diodes

Vol.20

405. P.J. Brewer, P.A. Lane, J. Huang, A.J. deMello, D.D.C. Bradley, and J.C. deMello, Physical Review B (2005),Vol.71, Pages 205209-1to6 Role of electron injection in polyfluorene-based light

emitting diodes containing PEDOT:PSS

Vol.20

406. G.C.M. Silvestre, M.T. Johnson, and A. Giraldo, J.M. shannon, Applied Physics Letters (2001), Vol.78, Pages 1619/3 Light degradation and voltage drift in polymer light-

emitting diodes

Vol.20

407. I.D. Parker and Y. Cao, C.Y. Yang, Journal of Applied Physics (1999), Vol. 85, Pages 2441-2447 Lifetime and degradation effects in polymer light-emitting

diodes

Vol.20

408. D.Y. Kondakov, J.of Appl.Physcs (2005),Vol.97, P24503-1to4 Direct observation oof deep electron traps in aged organic

light emitting diodes

Vol.20

409. J.C. Scott, P.J. Brock, J.R. Salem, S. Ramos, G.G.Malliaras, S.A. Carter, L. Bozano, syn. Metals (2000),V111-112,P289-293 Charge transport processes in organic light-emitting devices

Vol.20

410. A.Loannidis, E. Forsythe and Y. Gao, M.W. Wu, E.M.Conwell, Appl.Physcs Letters (1998),Vol.72, Pages 3038/3 Current-Voltage characteristic of organic light emitting

diodes

Vol.20

411. Y. Hamada, C. Adachi, T. Tsutsui, and S. Saito, Jpn. Journal Applied Physics (1992),Vol.31, Pages 1812-1816 Blue-Light-Emitting Organic Electroluminescent Devices

with Oxydazole Dimer Dyes as an Emitter

Vol.20

Page 70: Electronic Materials Library

412. P. Broms, J. Birgersson, N. Johansson, M. Logdlund, W.R. Salaneck, Synthetic Metals (1995), Vol.74, Pages 179-181 Calcium Electrodes in polymer LEDs

Vol.20

Vol.21

Page 71: Electronic Materials Library