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CURRICULUM VITAE JUNGCHUL LEE 1 | J. Lee JUNGCHUL LEE, Ph.D. Associate Professor Manufacturing and Instrumentation Laboratory (MNIL) Center for Extreme Thermal Physics and Manufacturing Department of Mechanical Engineering Korea Advanced Institute of Science and Technology N7(West)-5108, 291 Daehak-ro, Yuseong-gu Daejeon 34141, South Korea Phone: +82-42-350-3212, Fax: +82-42-350-3210 Email: [email protected] Webpage: http://mnil.kaist.ac.kr Google Scholar Information Microsoft Academic Researchgate Profile ORCID: 0000-0001-7880-8657 SCOPUS Author ID: 11839197000 RESEARCH INTERESTS Large scale batch fabrication of nanostructures based on silicon self-assembly, Hydrogel based micro-/nanoelectromechanical systems, Materials and processing for flexible, stretchable, and wearable devices, Nanoscale 3D printing of organic and inorganic hybrids, 3D printing for biomedical applications, Multifunctional atomic force microscopy, Single molecule force/mass spectroscopy, High-precision Laser based manufacturing and metrology, Additive manufacturing EDUCATION Cambridge, MA Massachusetts Institute of Technology 2008–2010 Postdoctoral Researcher; Biological Engineering Advisor: Scott R. Manalis Urbana, IL University of Illinois at Urbana Champaign 2007–2008 Postdoctoral Researcher; Mechanical Science and Engineering Advisor: William P. King Atlanta, GA Georgia Institute of Technology 2003–2007 Ph.D. in Mechanical Engineering (Major: MEMS, Minor: Heat transfer) Dissertation: Fabrication, Characterization, and Application of Multifunctional Microcantilever Heaters Advisor: William P. King Seoul, Korea Seoul National University 1994–2003 M.S. in Mechanical and Aerospace Engineering (Mechanical Engineering) Thesis: A study on Optimization of Two-Constant Fuel Model Coefficients for Transient Condition of an SI Engine Advisor: Sangken Kauh B.S. in Mechanical and Aerospace Engineering (Mechanical Engineering) Advisor: Wooil Lee

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Page 1: CURRICULUM VITAE JUNGCHUL LEE - KAISTmnil.kaist.ac.kr/mnil1/wp-content/uploads/2020/02/... · 2020-02-24 · CURRICULUM VITAE JUNGCHUL LEE 1 | J. Lee JUNGCHUL LEE, Ph.D. Associate

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JUNGCHUL LEE, Ph.D. Associate Professor Manufacturing and Instrumentation Laboratory (MNIL) Center for Extreme Thermal Physics and Manufacturing Department of Mechanical Engineering Korea Advanced Institute of Science and Technology N7(West)-5108, 291 Daehak-ro, Yuseong-gu Daejeon 34141, South Korea Phone: +82-42-350-3212, Fax: +82-42-350-3210 Email: [email protected] Webpage: http://mnil.kaist.ac.kr Google Scholar Information Microsoft Academic Researchgate Profile ORCID: 0000-0001-7880-8657 SCOPUS Author ID: 11839197000 RESEARCH INTERESTS Large scale batch fabrication of nanostructures based on silicon self-assembly, Hydrogel based micro-/nanoelectromechanical systems, Materials and processing for flexible, stretchable, and wearable devices, Nanoscale 3D printing of organic and inorganic hybrids, 3D printing for biomedical applications, Multifunctional atomic force microscopy, Single molecule force/mass spectroscopy, High-precision Laser based manufacturing and metrology, Additive manufacturing EDUCATION Cambridge, MA Massachusetts Institute of Technology 2008–2010

Postdoctoral Researcher; Biological Engineering Advisor: Scott R. Manalis

Urbana, IL University of Illinois at Urbana Champaign 2007–2008 Postdoctoral Researcher; Mechanical Science and Engineering Advisor: William P. King

Atlanta, GA Georgia Institute of Technology 2003–2007 Ph.D. in Mechanical Engineering (Major: MEMS, Minor: Heat transfer)

Dissertation: Fabrication, Characterization, and Application of Multifunctional Microcantilever Heaters Advisor: William P. King

Seoul, Korea Seoul National University 1994–2003 M.S. in Mechanical and Aerospace Engineering (Mechanical Engineering)

Thesis: A study on Optimization of Two-Constant Fuel Model Coefficients for Transient Condition of an SI Engine Advisor: Sangken Kauh

B.S. in Mechanical and Aerospace Engineering (Mechanical Engineering) Advisor: Wooil Lee

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PROFESSIONAL APPOINTMENTS Edmonton University of Alberta 2016–2019 Canada Adjunct Professor; Chemical and Materials Engineering

Daejeon, Korea Korea Advanced Institute of Science and Technology 2018–present Associate Professor; Mechanical Engineering

Seoul, Korea Sogang University 2014–2018 Associate Professor; Mechanical Engineering

Seoul, Korea Sogang University 2010–2014 Assistant Professor; Mechanical Engineering

AWARDS 22. Korean Society Mechanical Engineers – Micro/Nano division, Academic Award (2019) 21. The 3rd KSME-SEMES Open Innovation Challenge, Silver Prize (2018) 20. The 15th International Workshop on Nanomechanical Sensing (NMC 2018), Best Poster Award (Corresponding Author) (2018) 19. 2018 Spring Conference of the Korean Society of Mechanical Engineers – Micro/Nano division, Best Poster Award (Corresponding Author) (2018) 18. The 24th SAMSUNG HUMANTECH Award, Gold Prize (Advisor) (2018) 17. The 13th SAMSUNG ELECTRO-MECHANICS Best Paper Award, Gold Prize (Advisor) (2017) 16. The 2nd KSME-SEMES Open Innovation Challenge, Silver Prize (2017) 15. The 15th International Nanotech Symposium (NANO KOREA 2017), Best Poster Award (Corresponding Author) (2017) 14. The 15th International Nanotech Symposium (NANO KOREA 2017), Best Poster Award (Corresponding Author) (2017) 13. The 15th International Nanotech Symposium (NANO KOREA 2017), Best Poster Award (Corresponding Author) (2017) 12. The 30th IEEE International Conference on Micro Electro Mechanical Systems, Outstanding Student Paper Award Finalist (2017) 11. IEC 1906 Award (2016) 10. The Society of Micro Nano Systems Academic Award (2016) 9. The 12th SAMSUNG ELECTRO-MECHANICS Best Paper Award, Silver Prize (Advisor) (2016) 8. The 1st KSME-SEMES Open Innovation Challenge, Silver Prize (2016) 7. The 70th Korean Society of Mechanical Engineers Fall Conference Best Paper Award (Corresponding Author) (2016) 6. The 14th International Nanotech Symposium (NANO KOREA 2016), Best Poster Award (Silver Medal) (Corresponding Author) (2016) 5. The 22nd SAMSUNG HUMANTECH Award, Gold Prize (Advisor) (2016) 4. The 22nd SAMSUNG HUMANTECH Award, Silver Prize (Advisor) (2016) 3. The 18th Korean MEMS Conference Best Poster Presentation Award (Corresponding Author) (2016) 2. The 17th Korean MEMS Conference Industrial Innovation Award (Corresponding Author) (2015)

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1. Best Paper Award of the year 2013, Journal of Mechanical Science and Technology (Corresponding Author) JOURNAL PUBLICATIONS (Selected publications highlighted in blue) 86. M. Lim, J. Song, S. Lee, J. Lee, and B. Lee*, “Surface-plasmon-enhanced near-field radiative heat transfer between planar surfaces with a thin-film plasmonic coupler”, submitted. 85. J. Seo, C. Qin, J. Lee, and B. Lee*, “Tailoring the spectral absorption coefficient of a blended plasmonic nanofluid using a customized genetic algorithm”, submitted. 84. D. Wong, O. Abuzalat, J. Ko, J. Lee, S. Kim, and S. Park*, “Intense pulsed light treated near-field electrospun nanofiber on quartz tuning fork for multi-modal gas sensors”, submitted. 83. C. Qin, J. Kim, J. Lee, and B. Lee*, “Comparative analysis of direct-absorption parabolic-trough solar collectors considering concentric nano fluid segmentation”, International Journal of Energy Research, DOI:10.1002/er.5165. 82. J. Ko, D. Lee, B. Lee, S. Kauh, and J. Lee*, “Micropipette resonator enabling targeted aspiration and mass measurement of single particles and cells”, ACS Sensors, 4(12), 3275-3282 (2019). 81. J. Seo, P. Jung, M. Kim, S. Yang, I. Lee, J. Lee, H. Lee, and B. Lee*, “Design of a broadband solar thermal absorber using a deep neural network and experimental demonstration of its performance”, Scientific Reports, 9:15028 (2019). 80. T. Kim, D. Kim, B. Lee*, and J. Lee*, “Soft and deformable sensors based on liquid metals”, Sensors, 19(19) 10.3390/s19194250. 79. K. Whang, J. Chang, K. Jung, H. Ko, J. Lee, I. Choi, and T. Kang*, “Optical detection of small metabolites for biological gas conversion by using metal nanoparticle monolayers produced by capillary-assisted transfer”, Analytical Chemistry, 91(20), 13152-13157 (2019). 78. J. Je, J. Song, B. Lee, and J. Lee*, “Multiscale fluidic channels via internal oxidation and oxide etching of self-assembled silicon-on-nothing structures”, Journal of Microelectromechanical Systems, 28(5), 865-868 (2019). 77. B. Lee and J. Lee*, “Beyond mass measurement for single microparticle via bimodal operation of microchannel resonators”, Micro Nano Systems Letters, 7:9 (2019). 76. Y. Yoon, T. Thundat and J. Lee*, “Resonant hair humidity sensors: Revisit the hair hygrometer”, Sensors and Actuators: B-Chemical, 292, 1-6 (2019). 75. D. Estrada*, Z. Li, G. Choi, S. N. Dunham, A. Y. Serov, J. Lee, Y. Meng, F. Lian, N. C. Wang, A. Perez, R. T. Haasch, J. Zuo, W. P. King, J. A. Rogers, D. G. Cahill, and E. Pop*, “Thermal transport in layer-by-layer assembled polycrystalline graphene films”, npj 2D Materials and Applications, DOI:10.1038/s41699-019-0092-8 (2019). 74. Y. Yoon, I. Chae, T. Thundat and J. Lee*, “Hydrogel MEMS resonators: Beyond cost-effective sensing platform”, Advanced Materials Technologies, 1800597 (2019). 73. J. Ko, A. Jarzembski, K. Park, and J. Lee, “Hydrogel tip attached quartz tuning fork for shear force microscopy”, Micro Nano Systems Letters, 8:6 (2018). 72. Y. Yoon, S. Kim, D. Kim, S. Ko, and J. Lee, “Four degrees-of-freedom direct writing of liquid metal patterns on uneven surfaces”, Advanced Materials Technologies, 1800379 (2018). 71. Y. Shin, K. Whang, J. Chang, J. Jang, S. Yoo, J. Lee, Y. Choi, I. Choi, and T. Kang*, “Three-dimensional assembly of metal nanoparticles at oleic acid/water interface via their autonomous

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and rapid interfacial locomotion”, Advanced Materials Interfaces, 1800981 (2018). 70. J. Ko, Y. Yoon, and J. Lee*, “Quartz tuning forks with hydrogel patterned by dynamic mask lithography for humidity sensing”, Sensors and Actuators: B-Chemical, 273, 821-825 (2018). 69. D. Kim, Y. Yoon, S. Kauh*, and J. Lee*, “Towards sub-microscale liquid metal patterns: Cascade phase change mediated PICK-n-PLACE transfer of liquid metals printed and stretched over a flexible substrate”, Advanced Functional Materials, 28, 1800380 (2018). 68. J. Liu, M. Miao, K. Jiang, F. Khan, A. Goswami, R. McGee, Z. Li, L. Nguyen, Z. Hu, J. Lee, K. Cadien, and T. Thundat, “Sustained electron tunneling at unbiased metal-insulator-semiconductor triboelectric contacts”, Nano Energy, 48, p. 320-326 (2018). 67. D. Jensen, J. Song, D. Kim, J. Lee, G.D. Bothun, A. Bose, and K. Park*, “Design analysis of hybrid silicon-on-nothing photonic crystal-nanoantenna structures for engineering of mid-infrared radiative properties”, Journal of Nanophotonics, 12(2), 026005 (2018). 66. J. Lee, D. Kim, Y. Yoon, B. Lee, J. Ko, and J. Lee*, “Hydrogel Tip Integration onto Tipless Silicon Cantilevers for Atomic Force Microscopy and its Facile Regeneration”, Journal of Microelectromechanical Systems, 27(2), p. 125-126 (2018). 65. J. Liu, A. Goswami, K. Jiang, F. Khan, S. Kim, J. Lee, and T. Thundat*, “Nanoscale sliding-Schottky contact on MoS2 thin layers generates direct-current (DC) triboelectricity”, Nature Nanotechnology, 13,112-116 (2018). 64. L. Zhang, W. Zheng, H. Lee, J. Lee, L. Wu, and D. Kim*, “A study of morphological evolution of silicon micro-structure based on phase field model”, Ferroelectrics, 520, 154-158 (2017). 63. T. Kim, K. Kim, S. Kim, J. Lee, and W. Kim*, “Micropatterning of liquid metal by dewetting”, Journal of Microelectromechanical Systems, 26(6), p. 1244-1247 (2017). 62. H. Park, K. Whang, Y. Shin, J. Lee, and T. Kang*, “Synthesis of colloidal plasmonic microspheres via spontaneous formation and three-dimensional assembly of metal nanoparticles”, Korean Journal of Chemical Engineering, 34(7), p. 2086-2091 (2017). 61. S. Chaudhari, K. Chaudhari, S. Kim, F. Khan, J. Lee*, and T. Thundat*, “Electrophoresis assisted time-of-flow mass spectrometry using hollow nanomechanical resonators”, Scientific Reports, 7, 3535 (2017). 60. S. Kim, J. Song, S. Cho, and J. Lee*, “Facile batch fabrication of hydrogel atomic force microscope cantilevers via capillary filling and ultraviolet curing in an aligned elastomeric mold pair”, Journal of Microelectromechanical Systems, 26(3), p. 504-506 (2017). 59. D.V. Ponnuvelu, S. Kim, and J. Lee*, “Polyethyleneglycol diacrylate hydrogels with plasmonic gold nanospheres incorporated via functional group optimization”, Micro Nano Systems Letters, 5(21) (2017). 58. D. Lee, J. Kim, N. Cho, T. Kang, S. Kauh, and J. Lee*, “Pulled microcapillary tube resonators with electrical readout for mass sensing applications”, Scientific Reports, 6, 33799 (2016). 57. K. Kim, S. Kim, T. Kim, W. Kim, and J. Lee*, “Spray-coated liquid metal reflectors for transparent hydrogel atomic force microscope cantilevers”, Journal of Microelectromechanical Systems, 25(5), p. 848-850 (2016). 56. I. Chae, M.F. Khan, J. Song, T. Kang, J. Lee*, and T. Thundat*, “Standoff mechanical resonance spectroscopy based on infrared-sensitive hydrogel microcantilevers”, Analytical Chemistry, 88(19), p. 9678-9684 (2016).

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55. S. Kim, J. Lee*, and B. Choi*, “3D printed fluidic valves for remote operation via external magnetic field”, International Journal of Precision Engineering and Manufacturing, 17(7), p. 937-942 (2016). 54. M.F. Khan, N. Miriyal, J. Lee, M. Hassanpourfard, A. Kumar, and T. Thundat*, “Heat capacity measurements of sub-nanoliter liquids using biomaterial microchannel cantilevers”, Applied Physics Letters, 108, 211906 (2016). 53. J. Lee, J. Song, S. Kim, S. Kim, W. Lee, J. Jackman, D. Kim, N. Cho*, and J. Lee*, “Multifunctional hydrogel nano-probes for atomic force microscopy”, Nature Communications 7,11566 (2016). 52. S. Hamian, A.M. Gauffreau, T. Walsh, J. Lee, and K. Park*, “AC electrothermal characterization of doped-Si heated microcantilevers using frequency-domain finite element analysis”, Journal of Heat Transfer, 138(5), 052401 (2016). 51. J. Kim, J. Song, K. Kim, S. Kim, J. Song, N. Kim, M.F. Khan, L. Zhang, J.E. Sader, K. Park, D. Kim, T. Thundat, and J. Lee*, “Hollow microtube resonators via silicon self-assembly toward subattogram mass sensing applications”, Nano Letters, 16(3), p. 1537-1545 (2016). 50. S. Kim, J. Lee*, and B. Choi*, “Stretching and twisting sensing with liquid-metal strain gauges printed on silicone elastomers”, IEEE Sensors Journal, 15(11), p. 6077-6078 (2015). 49. J. Choi, S. Kim, J. Lee*, and B. Choi*, “Improved capacitive pressure sensors based on liquid alloy and silicone elastomer”, IEEE Sensors Journal, 15(8), p. 4180-4181 (2015). 48. T. Walsh, J. Lee, and K. Park*, “Laser-assisted photothermal heating of a plasmonic nanoparticle- suspended droplet in a microchannel”, Analyst, 140(5), p. 1535-1542 (2015). 47. J. Je and J. Lee*, “Design, fabrication, and characterization of liquid metal microheaters”, Journal of Microelectromechanical Systems, 23(5) p. 1156-1163 (2014). 46. D. Lee, M. Lee, N. Jung, M. Yun, J. Lee, T. Thundat, and S. Jeon*, “Modulus-tunable magnetorheological elastomer microcantilevers”, Smart Materials and Structures, 23, 055057 (2014). 45. H. Park, B. Lee, and J. Lee*, “Simultaneous determination of local temperature and thickness of heated cantilevers using two-wavelength thermoreflectance”, Review of Scientific Instruments, 85, 036109 (2014). Selected as Editor’s Picks from Review of scientific Instruments (2014.09). 44. S. Olcum, N. Cermak, S.C. Wasserman, K.S. Christine, H. Atsumi, K. Payer, W. Shen, J. Lee, A.M. Belcher, S.N. Bhatia, and S.R. Manalis*, “Weighing nanoparticles in solution at the attogram scale”, Proceedings of the National Academy of Sciences of the United States of America, 111(4) p.1310-1315 (2014). 43. M. Yun, I. Lee, S. Jeon, and J. Lee*, “Facile phase transition measurements for nanogram level liquid samples using suspended microchannel resonators”, IEEE Sensors Journal, 14(3) p.781-785 (2014). 42. M. Yang, J. Choi, J. Lee, N. Hur, and D. Kim*, “Wet blasting as a deburring process for aluminum”, Journal of Materials Processing Technology, 214(3), p.524-530 (2014). 41. I. Lee and J. Lee*, “Highly uniform and controllable micropatterning of a hydrogel on microcantilevers”, Journal of Mechanical Science and Technology, 27(11) p.3439-3444 (2013). 40. J. Kim, J. Lee*, and B. Choi*, “Fabrication and characterization of strain gauge integrated polymeric diaphragm pressure sensors”, International Journal of Precision Engineering and Manufacturing, 14(11) p.2003-2008 (2013). 39. J. Kim, S. Han, T. Walsh, K. Park, B. Lee, W.P. King, and J. Lee*, “Temperature measurements of heated microcantilevers using scanning thermoreflectance microscopy”, Review of Scientific Instruments, 84, 034903 (2013).

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38. I. Lee and J. Lee*, “Measurement uncertainties in resonant characteristics of MEMS resonators”, Journal of Mechanical Science and Technology, 27(2), p.491-500 (2013). 37. I. Lee, K. Park, and J. Lee*, “Precision density and volume contraction measurements of ethanol-water binary mixtures using suspended microchannel resonators”, Sensors and Actuators A, 194, p.62-66 (2013). 36. J. Park, K. Kim, J. Lee, H. Kim, and D. Huh*, “Organomimetic microsystems technologies”, Biomedical Engineering Letters, 2, p.88-94 (2012). 35. I. Lee, K. Park, and J. Lee*, “Precision viscosity measurement using suspended microchannel resonators”, Review of Scientific Instruments, 83, 116106 (2012). 34. J. Lee*, B.J. Lee, and W.P. King*, “Deflection sensitivity calibration of heated microcantilevers using pseudo-gratings”, IEEE Sensors Journal, 12(8), p.2666-2667 (2012). 33. Y. Kwon, H. Lee, J. Lee*, and B. Choi*, “Vibration mode-dependent energy harvesting characteristics of magnetoelectric composite cantilevers”, IEEE Sensors Journal, 12(11), p.3271-3272 (2012). 32. J.E. Sader, T.P. Burg, J. Lee, and S.R. Manalis*, “Energy dissipation in microfluidic beam resonators: Effect of Poisson’s ratio”, Physical Review E, 84, 026304 (2011). 31. J. Lee, A.K. Bryan, S.R. Manalis*, “High precision mass sensing using microchannel resonators in the second vibration mode”, Review of Scientific Instruments, 82, 023704 (2011). Republished online in the Virtual Journal of Nanoscale Science and Technology. 30. J. Lee, R. Chunara, W. Shen, K. Payer, K. Babcock, T.P. Burg, and S.R. Manalis*, “Suspended microchannel resonators with piezoresistive sensors”, Lab on a Chip, 11, p.645-651 (2011). 29. J.E. Sader, J. Lee, and S.R. Manalis*, “Energy dissipation in microfluidic beam resonators: Dependence on mode number”, Journal of Applied Physics, 108, 114507 (2010). 28. J. Lee, W. Shen, K. Payer, T.P. Burg, and S.R. Manalis*, “Toward attogram mass measurements in solution with suspended nanochannel resonators”, Nano Letters, 10(7), p.2537-2542 (2010). Highlighted in Nature Nanotechnology. 27. N. Privorotskaya, Y. Liu, J. Lee, H. Zeng, J.A. Carlisle, A. Radadia, L. Millet, R. Bashir, and W.P. King*, “Rapid thermal lysis of cells using silicon-diamond microcantilever heaters”, Lab on a Chip, 10, p.1135-1141 (2010). 26. J. Lee, A. Liao, E. Pop, and W.P. King*, “Electrical and thermal coupling to a single-wall carbon nanotube device using an electro-thermal nanoprobe”, Nano Letters, 9(4), p.1356-1361 (2009). 25. O.A. Nafday, B.L. Weeks*, W.P. King, and J. Lee, “Inducing nanoscale morphology changes of pentaerythritol tetranitrate using a heated atomic force microscope cantilever”, Journal of Energetic Materials, 27(1), p.1-16 (2009). 24. J. Lee, C. M. Spadaccini, E. V. Mukerjee, and W.P. King*, “Differential scanning calorimeter based on suspended membrane single crystal silicon micro hotplate”, Journal of Microelectromechanical Systems, 17(6), p.1513-1525 (2008). 23. J. Lee and W.P. King*, “Liquid operation of silicon microcantilever heaters”, IEEE Sensors Journal, 8(11) p.1805-1806 (2008). 22. A. Loui, F.T. Goericke, T.V. Ratto, J. Lee, B.R. Hart, and W.P. King*, “The effect of piezoresistive microcantilever geometry on cantilever sensitivity during surface stress chemical sensing”, Sensors and Actuators A, 147, p.516-521 (2008). 21. W. Lee, L.J. Whitman, J. Lee, W.P. King, and P.E. Sheehan*, “The nanopatterning of a stimulus responsive polymer by thermal dip-pen nanolithography”, Soft Matter, 4, p.1844-1847 (2008).

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20. J. Lee, H. Hunter, A. Glezer, and W.P. King*, “Phase change and cooling characteristics of microjets measured using microcantilever heaters”, Sensors and Actuators A, 147, p.64-69 (2008). 19. J. Lee, F. Goericke, and W.P. King*, “Temperature dependent thermomechanical noise spectra of doped silicon microcantilevers”, Sensors and Actuators A, 145-146, p.37-43 (2008). 18. J. Lee and W.P. King*, “Microthermogravimetry using a microcantilever hotplate with integrated temperature compensated piezoresistive strain sensors”, Review of Scientific Instruments, 79, 054901 (2008). Republished online in the Virtual Journal of Nanoscale Science and Technology. 17. K. Park, J. Lee, R. Bhargava, and W.P. King*, “Routine femtogram-level chemical analyses using vibrational spectroscopy and self-cleaning scanning probe microscopy tips”, Analytical Chemistry, 80, p.3211-3228 (2008). 16. J. Lee and W.P. King*, “Improved all-silicon microcantilever heaters with integrated piezoresistive sensing”, Journal of Microelectromechanical Systems, 17(2), p.432-445 (2008). 15. F. Goericke, J. Lee, and W.P. King*, “Microcantilever hotplates with temperature-compensated piezoresistive strain sensors”, Sensors and Actuators A, 143, p.181-190 (2008). 14. J. Lee and W.P. King*, “Microcantilever actuation via periodic internal heating”, Review of Scientific Instruments, 78, 126102 (2007). Republished online in the Virtual Journal of Nanoscale Science and Technology. One of the 20 most downloaded articles from Review of Scientific Instruments during December 2007. 13. D. Wang, R. Szoszkiewicz, M. Lucas, E. Riedo, T. Okada, S.C. Jones, S.R. Marder, J. Lee, and W.P. King*, “Local wettability modification by thermomechanical nanolithography”, Applied Physics Letters, 91, 243104 (2007). Republished online in the Virtual Journal of Nanoscale Science and Technology. 12. J.L. Remmert, Y. Wu, J. Lee, M.A. Shannon, and W.P. King*, “Contact potential measurement using a heated atomic force microscope tip”, Applied Physics Letters, 91, 143111 (2007). 11. K. Park, J. Lee, Z.M. Zhang, and W.P. King*, “Topography imaging with a heated atomic force microscope cantilever in tapping mode”, Review of Scientific Instruments, 78, 043709 (2007). Republished online in the Virtual Journal of Nanoscale Science and Technology. 10. B.W. Chui*, L. Aeschimann, T. Akiyama, U. Staufer, N.F. de Rooij, J. Lee, F. Goericke, W.P. King, and P. Vettiger, “Advanced temperature compensation for piezoresistive sensors based on crystallographic orientation”, Review of Scientific Instruments, 78, 043706 (2007). Republished online in the Virtual Journal of Nanoscale Science and Technology. 9. K. Park, J. Lee, Z.M. Zhang, and W.P. King*, “Frequency-dependent electrical and thermal response of heated atomic force microscope cantilevers”, Journal of Microelectromechanical Systems, 16(2), p.213-222 (2007). 8. J. Lee, T.L. Wright, M.R. Abel, E.O. Sunden, A. Marchenkov, S. Graham, and W.P. King*, “Thermal conduction from microcantilever heaters in partial vacuum”, Journal of Applied Physics, 101, 014906 (2007). Republished online in the Virtual Journal of Nanoscale Science and Technology. 7. J. Lee and W.P. King*, “Microcantilever hotplates: Design, fabrication, and characterization”, Sensors and Actuators A, 136, p.291-298 (2007). 6. K.J. Kim, K. Park, J. Lee, Z.M. Zhang, and W.P. King*, “Nanotopographical imaging using a heated atomic force microscope cantilever probe”, Sensors and Actuators A, 136, p.95-103 (2007). 5. J. Lee, K. Naeli, H. Hunter, J. Berg, T.L. Wright, C. Courcimault, N. Naik, M.G. Allen, O. Brand, A. Glezer, and W.P. King*, “Characterization of liquid and gaseous micro- and nanojets

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using microcantilever sensors”, Sensors and Actuators A, 134, p.128-139 (2007). 4. N. Naik, C. Courcimault, H. Hunter, J. Berg, J. Lee, K. Naeli, T.L. Wright, M.G. Allen, O. Brand, A. Glezer, and W.P. King*, “Microfluidics for generation and characterization of liquid and gaseous micro and nanojets”, Sensors and Actuators A, 134, p.119-127 (2007). 3. A. Allen, A. Cannon, J. Lee, W.P. King, and S. Graham*, “Flexible microdevices based on carbon nanotubes”, Journal of Micromechanics and Microengineering, 16, p.2722-2729 (2006). 2. J. Lee, T. Beechem, T.L. Wright, B.A. Nelson, S. Graham, and W.P. King*, “Electrical, thermal, and mechanical characterization of silicon microcantilever heaters”, Journal of Microelectromechanical Systems, 15(6), p.1644-1655 (2006). 1. E.O. Sunden, T.L. Wright, J. Lee, W.P. King, and S. Graham*, “Room-temperature chemical vapor deposition and mass detection on a heated atomic force microscope cantilever”, Applied Physics Letters, 88, 033107 (2006). Republished online in the Virtual Journal of Nanoscale Science and Technology. CONFERENCE PROCEEDINGS AND PRESENTATIONS 142. D. Kim, T. Kim, J. Lee, and B. Lee, “Thermal conductivity measurement of liquid metal with 3-omega method”, The 2nd Pacific Rim Thermal Engineering Conference (PRTEC), Maui Island, Hawaii, USA (December 17, 2019). 141. E. Lee, H. Kang, J. Lee, and B. Lee, “Thermal characterization of a BGA NVMe solid state drive in Mini-ITX system”, The 2nd Pacific Rim Thermal Engineering Conference (PRTEC), Maui Island, Hawaii, USA (December 17, 2019). 140. J. Kim, T. Kim, H. Lee, J. Lee, and B. Lee, “Fabrication of liquid-metal nano-emulsion and characterization of its dispersion stability”, The 2nd Pacific Rim Thermal Engineering Conference (PRTEC), Maui Island, Hawaii, USA (December 16, 2019). 139. J. Ko, B. Lee, and J. Lee, “Precision printing and microstructure fabrication using microcantilevers with fluidic channel and dispensing nozzles”, Fall conference of the Korean Society of Mechanical Engineers, Jeju Island (Korea, November 2019). 138. T. Kim, D. Kim, B. Lee, and J. Lee, “Precision measurement of thermal conductivity of artificial skin with liquid metal sensor fabricated by microcontact printing”, Fall conference of the Korean Society of Mechanical Engineers, Jeju Island, Korea (November 2019). 137. J. Lee, “Fluidic channel integrated resonators for liquid and particle sensing”, Asia-Pacific Thermofluid Science and Engineering Conference (APTSE) 2019, Taipei, Taiwan (November 1, 2019) (Invited). 136. J. Lee, F. Khan, T. Thundat, and J. Lee, “Dual channel microfluidic resonators for simultaneous measurements of liquid analytes”, The 17th International Nanotech Symposium and Exhibition (NANO KOREA 2019), Ilsan, Korea (July 5, 2019). 135. J. Ko, D. Lee, S. Kauh, and J. Lee, “Pulled glass pipette resonators enabling mass measurements for selectively aspirated microscale objects”, The 17th International Nanotech Symposium and Exhibition (NANO KOREA 2019), Ilsan, Korea (July 5, 2019). 134. T. Kim, B. Lee, and J. Lee, “Investigation of mechanical properties of liquid metal patterns on a substrate using scanning probe microscopy”, The 17th International Nanotech Symposium and Exhibition (NANO KOREA 2019), Ilsan, Korea (July 5, 2019). 133. J. Ko, D. Lee, B. Lee, T. Kang, S. Kauh, and J. Lee, “Aspiration and mass measurements of microparticles and unicellular organisms via micropipette resonators”, The 20th International Conference on Solid-state Sensors, Actuators, and Microsystems, Berlin, Germany (June 27, 2019). 132. J. Lee, F. Khan, T. Thundat, and J. Lee, “Dual channel microfluidic resonators for

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simultaneous measurements of liquid analytes”, The 20th International Conference on Solid-state Sensors, Actuators, and Microsystems, Berlin, Germany (June 26, 2019). 131. J. Lee, “Fluidic channel integrated resonators via traditional microfabrication and unconventional fabrication”, The 16th International Workshop on Nanomechanical Sensing (NMC2019), Lausanne, Switzerland (Jun. 20, 2019) (Invited). 130. J. Ko, D. Lee, S. Kauh, and J. Lee, “Development of micropipette resonators for selective mass measurement”, Spring conference of Korean Society of Mechanical Engineers – Micro/Nano division, Busan, Korea (May 24, 2019). 129. T. Kim, B. Lee, and J. Lee, “Characterization of mechanical and electrical properties of liquid metal patterns by scanning probe microscopy, Spring conference of Korean Society of Mechanical Engineers – Micro/Nano division, Busan, Korea (May 24, 2019). 128. J. Lee, “Fluidic channel integrated resonators via traditional microfabrication and unconventional fabrication”, 2019 KPS Spring Meeting, Daejeon, Korea, April 2019 (Invited talks). 127. J. Ko, D. Lee, S. Kauh, and J. Lee, “Selective aspiration and in-situ mass measurement for microparticles and unicellular Organisms by micropipette resonators”, The 21st Korean MEMS Conference, Jeju Island, Korea, April 2019. 126. J. Lee, T. Kim, F. Khan, T. Thundat, B. J. Lee, and J. Lee, “Dual channel microfluidic resonators for simultaneous measurements of liquid analytes”, The 21st Korean MEMS Conference, Jeju Island, Korea, April 2019. 125. J. Ko, A. Jarzembski, Y. Yoon, K. Park, B. Lee, and J. Lee, “Modifying quartz tuning forks for shear force microscopy and humidity sensing”, The 32nd International Conference on Micro Electro Mechanical Systems, Seoul, Korea, January 2019 (Open poster). 124. Y. Yoon, F. Khan, T. Thundat, and J. Lee, “Thermal characterization of liquid analytes via photothermal modulation of microfluidic resonators”, The 32nd IEEE Conference on Micro Electro Mechanical Systems, Seoul, Korea, January 2019. 123. J. Lee, “High-performance mechanical transducers via unconventional materials and fabrication”, Nano Convergence Conference 2019, Korea, January 2019 (Invited talk). 122. J. Rho, J. Lee, and B. Lee, “Thermal response of Si AFM cantilever for achieving AFM-Thermoreflectance thermometry”, Nanoscale and Microscale Heat Transfer VI, Eurotherm Seminar No. 111, Levi, Lapland, Finland, December 2018. 121. T. Thundat, F. Khan, S. Chaudhari, K. Chaudhari, S. Kim, and J. Lee, “Microfluidic cantilever biosensors”, 2018 IEEE Sensors, New Delhi, India, October 2018. 120. J. Lee, Y. Yoon, B. Lee, and J. Ko, “Polymeric atomic force microscope cantilevers fabricated in elastomeric molds via ultraviolet curing”, Emerging Technologies in Mechanical Engineering 2018, Jeju Island, Korea, August 2018. 119. D. Wong, A. Sandwell, J. Ko, J. Lee, and S. S. Park, “Multi-modal quartz tuning fork with electrospun nanofiber for hydrogen gas sensing”, The 15th International Workshop on Nanomechanical Sensing, Incheon, Korea, June 2018. 118. J. Ko, D. Yang, A. Jarzembski, K. Park, W. Ryu, and J. Lee, “Polymer tip attached quartz tuning forks for shear force atomic force microscopy”, The 15th International Workshop on Nanomechanical Sensing, Incheon, Korea, June 2018. 117. Y. Yoon and J. Lee, “Resonant hair humidity sensors: Revisit the hair hydrometer”, The 15th International Workshop on Nanomechanical Sensing, Incheon, Korea, June 2018. 116. R. Abraham, F. Khan, A. Alodhayb, Y. Yoon, J. Lee, and T. Thundat, “Charge transport mechanisms in liquids and polymers investigated using Lorentz force”, The 15th International

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Workshop on Nanomechanical Sensing, Incheon, Korea, June 2018. 115. D. Jenson, J. Song, D. Kim, J. Lee, G. D. Bothun, A. Bose, and K. Park, “Modeling of hybrid silicon-on-nothing photonic crystal-nanoantenna structures for mid-infrared photonic-plasmonic coupling”, The 15th International Workshop on Nanomechanical Sensing, Incheon, Korea, June 2018. 114. B. Lee, Y. Yoon, S. Kim, and J. Lee, “Batch fabrication of polymer atomic force microscope cantilevers in PDMS microfluidic mold assembly”, The 15th International Workshop on Nanomechanical Sensing, Incheon, Korea, June 2018. 113. Y. Yoon and J. Lee, “Hydrogel membrane resonators with metallic piezoresistors deposited through hydrogel shadow mask”, The 15th International Workshop on Nanomechanical Sensing, Incheon, Korea, June 2018. 112. Y. Yoon, D. Kim, J. Kim, and J. Lee, “Pulled theta microcapillary tube resonators with injected liquid metal heater for thermophysical property measurements”, The 15th International Workshop on Nanomechanical Sensing, Incheon, Korea, June 2018. 111. D. Lee, G. Shin, Y. Yoon, S. Kauh, and J. Lee, “Asymmetric microtube resonators for weighing microparticles when two resonance motion occurs”, The 15th International Workshop on Nanomechanical Sensing, Incheon, Korea, June 2018. 110. J. Kim, Y. Kang, Y. Yoon, F. Khan, and J. Lee, “Cost-effective educational vibrometer for static and dynamic measurement of MEMS resonators”, The 15th International Workshop on Nanomechanical Sensing, Incheon, Korea, June 2018. 109. B. Lee, Y. Yoon, and J. Lee, “Batch fabrication of photocurable polymeric atomic force microscope cantilevers in microfluidic mold assembly”, Spring Conference of the Korean Society of Mechanical Engineers – Micro/Nano division, Busan, Korea, May 2018. 108. J. Ko and J. Lee, “Comparative scanning tunneling microscopy using electrochemically etched tungsten and hand-cut platinum-iridium tips”, Spring Conference of the Korean Society of Mechanical Engineers – Micro/Nano division, Busan, Korea, May 2018. 107. J. Lee, Y. Yoon, Bora Lee, and J. Ko, “Microfluidic fabrication approach for atomic force microscope cantilevers with UV curable polymers”, Spring Conference of the Korean Society of Mechanical Engineers – Micro/Nano division, Busan, Korea, May 2018. 106. T. Thundat, R. Abraham, F. Khan, S. Kim, and J. Lee, “Time-of-flow micromechanical mass spectrometry and micromechanical infrared spectroscopy using microfluidic cantilever”, ECS Meeting, May 2018. 105. Y. Yoon, D. Kim, J. Kim, and J. Lee, “Pulled theta capillary tube resonator with liquid metal heater for thermomechanical analysis”, Spring conference of the Korean Society of Mechanical Engineers – Micro/Nano division, Busan, Korea, May 2018. 104. J. Lee, Y. Yoon, B. Lee, and J. Ko, “Polymeric atomic force microscope cantilevers fabricated via replica molding and ultraviolet curing”, The 20th International Scanning Probe Microscopy Conference, Arizona, USA, May 2018. 103. Y. Yoon and J. Lee, “Free standing hydrogel microstructures for MEMS sensing platforms”, The 20th Korean MEMS Conference, Jeju Island, Korea, April 2018. 102. Y. Yoon, D. Kim, and J. Lee, “Pulled theta capillary tube resonator with liquid metal heater for thermal sensing application”, The 20th Korean MEMS Conference, Jeju Island, Korea, April 2018. 101. D. Kim, Y. Yoon, S. Kauh, and J. Lee, “High-resolution liquid metal patterning via phase change of liquid metal and elastic deformation of flexible substrates”, The 20th Korean MEMS Conference, Jeju Island, Korea, April 2018.

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100. D. Kim, Y. Yoon, S. Kauh, and J. Lee, “Towards sub-microscale liquid metal patterns: Cascade phase change mediated PICK-n-PLACE transfer of liquid metals printed and stretched over a flexible substrate”, The 31st IEEE Conference on Micro Electro Mechanical Systems, Belfast, UK, January 2018. 99. J. Ko, A. Jarzembski, K. Park, and J. Lee, “Hydrogel tip attached quartz tuning fork using elastomeric tip mold replicated from electrochemically etched tungsten wire”, The 31st IEEE Conference on Micro Electro Mechanical Systems, Belfast, UK, January 2018. 98. B. Lee, Y. Yoon, and J. Lee, “Microfluidic fabrication approach for atomic force microscope cantilevers with photocurable resins”, The 31st IEEE Conference on Micro Electro Mechanical Systems, Belfast, UK, January 2018. 97. J. Lee, “Hydrogel microelectromechanical systems”, The 4th International Conference on Advanced Electromaterials, Jeju Island, Korea, November 2017 (Invited). 96. J. Lee, B. Lee, J. Ko, and Y. Yoon, “Unconventional micro-/nanofabrication materials and processes”, The 30th International Microprocesses and Nanotechnology Conference (MNC 2017), Jeju Island, Korea, November 2017 (Invited). 95. D. Kim, Y. Yoon, S. Kauh and J. Lee, “High-resolution liquid metal patterning via phase change of liquid metal and elastic deformation of flexible substrate”, Fall Conference of the Korean Society of Mechanical Engineers, Jeju Island, Korea, November 2017. 94. B. Lee, Y. Yoon, S. Kim and J. Lee, “Rapid batch fabrication of atomic force microscope cantilevers with photocurable polymers using microfluidic PDMS mold assembly”, Fall Conference of the Korean Society of Mechanical Engineers, Jeju Island, Korea, November 2017. 93. J. Ko, Y. Yoon, B. Lee and J. Lee, “Quartz tuning forks with hydrogel printed by dynamic mask lithography for humidity sensing applications”, Fall Conference of the Korean Society of Mechanical Engineers, Jeju Island, Korea, November 2017. 92. Y. Yoon and J. Lee, “Hydrogel membrane resonators with thin metal film piezoresistors deposited through hydrogel shadow mask”, Fall Conference of the Korean Society of Mechanical Engineers, Jeju Island, Korea, November 2017. 91. Y. Yoon, S. Kim, B. Lee, J. Ko, and J. Lee, “Stepping away from traditional micro-/nanofabrication”, The 7th Canada-Korea Conference on Science and Technology, Montreal, Canada, August 2017. Keynote presentation. 90. Y. Yoon, B. Lee, S. Kim, and J. Lee, “Hydrogel microeletromechanical systems (MEMS) resonators for pressure and humidity sensing applications”, The 15th International Nanotech Symposium (NANO KOREA 2017), July 2017. Best Poster Award. 89. J. Ko, S. Kim, Y. Yoon, and J. Lee, “Hydrogel tip attached quartz tuning fork by using a mold fabricated from an electrochemically etched tungsten wire”, The 15th International Nanotech Symposium (NANO KOREA 2017), July 2017. Best Poster Award. 88. J. Lee, B. Lee, S. Kwon, Y. Yoon, S. Kim, and J. Lee, “Sharpness improved hydrogel atomic force microscope cantilevers via wettability enhanced silicon tip mold by metal deposition”, The 15th International Nanotech Symposium (NANO KOREA 2017), July 2017. Best Poster Award. 87. Y. Yoon, S. Kim, B. Lee, T. Thundat, and J. Lee, “Revisit the human hair hygrometer by making hair resonators”, The 10th International Symposium on Nature-Inspired Technology, Cebu, Philippine, June 2017. 86. S. Kim, B. Lee, Y. Yoon, T. Thundat, and J. Lee, “Static and dynamic operation of metal-coated hydrogel cantilever humidity sensors based on hygroscopic mismatch”, The 19th International Conference on Solid-State Sensors, Actuators and Microsystems, Kaohsiung, Taiwan, June 2017.

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85. Y. Yoon, S. Kim, and J. Lee, “Fabrication and characterization of hydrogel MEMS resonators via dynamic mask lithography”, The 19th International Conference on Solid-State Sensors, Actuators and Microsystems, Kaohsiung, Taiwan, June 2017. 84. Y. Yoon and J. Lee, “Fabrication and characterization of hydrogel membrane pressure sensors”, Spring Conference of the Korean Society of Mechanical Engineers – Micro/Nano division, Busan, Korea, May 2017. 83. J. Lee, S. Kwon, B. Lee and J. Lee, “Sharpness improvement of hydrogel atomic force microscope tip by metal deposited silicon tip replica mold”, Spring Conference of the Korean Society of Mechanical Engineers – Micro/Nano division, Busan, Korea, May 2017. 82. B. Lee, S. Kim, Y. Yoon and J. Lee, “Metal-hydrogel composite microcantilever humidity sensors fabricated by dynamic mask lithography”, Spring Conference of the Korean Society of Mechanical Engineers – Micro/Nano division, Busan, Korea, May 2017. 81. J. Ko, S. Kim, Y. Yoon and J. Lee, “Hydrogel tip attached quartz tuning fork by using a mold fabricated from electrochemically etched tungsten wire”, Spring Conference of the Korean Society of Mechanical Engineers – Micro/Nano division, Busan, Korea, May 2017. 80. Y. Yoon, B. Lee, S. Kim and J. Lee, “Fabrication and characterization of hydrogel MEMS resonators via dynamic mask lithography”, The 14th International Workshop on Nanomechanical Sensing, Hawaii, USA, April 2017. 79. S. Kim and J. Lee, “Wear mechanisms and facile regeneration of hydrogel nano-probes for amplitude modulation atomic force microscopy”, The 14th International Workshop on Nanomechanical Sensing, Hawaii, USA, April 2017. 78. Y. Yoon, S. Kim and J. Lee, “Hydrogel microelectromechanical systems (MEMS) resonators via dynamic mask lithography and dry state sacrificial process”, The 19th Korean MEMS Conference, Jeju Island, Korea, April 2017. 77. B. Lee, S. Kim and J. Lee, “Humidity sensing based on hygroscopic mismatch of metal-hydrogel composite microcantilevers”, The 19th Korean MEMS Conference, Jeju Island, Korea, April 2017. 76. S. Kim and J. Lee, “Hydrogel-silicon hybrid cantilevers for studying wear characteristics and regeneration of soft imaging tips toward amplitude-modulation atomic force microscopy”, The 19th Korean MEMS Conference, Jeju Island, Korea, April 2017. 75. S. Kim, J. Song, and J. Lee, “Facile fabrication of multiple hydrogel atomic force microscope cantilevers via capillary filling and ultraviolet curing in an alignment PDMS mold pair”, The 30th IEEE Conference on Micro Electro Mechanical Systems, Las Vegas, USA, January 2017. 74. D. Lee, S. Kauh, and J. Lee, “Pulled microcapillary tube resonators for high precision microdroplet size measurements”, The 30th IEEE Conference on Micro Electro Mechanical Systems, Las Vegas, USA, January 2017. 73. S. Kim, Y. Yoon, and J. Lee, “Direct assembly of a hydrogel nano-tip onto silicon microcantilevers for wear study and facile regeneration of soft atomic force microscope probes”, The 30th IEEE Conference on Micro Electro Mechanical Systems, Las Vegas, USA, January 2017. Nominated as one of 12 outstanding student paper award finalists. 72. S. Kim, S. Cho, and J. Lee, “Can hydrogel AFM cantilevers outperform silicon counterparts?”, The 4th Kanazawa Bio-AFM Workshop, Kanazawa, Japan, October 2016. 71. S. Kim, J. Song, and J. Lee, “Hollow nanomechanical resonant mass sensors via unconventional silicon self-assembly”, The 14th International Nanotech Symposium (NANO KOREA 2016), July 2016. Best Poster Award (Silver Medal). 70. D. Lee, J. Kim, N. Cho, S. Kauh, and J. Lee, “Microcapillary mass sensors with electrical

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readout via quartz tuning fork”, The 13th International Workshop on Nanomechanical Sensing, Delft, Netherlands, June 2016. 69. S. Kim and J. Lee, “Wear characteristics of hydrogel atomic force microscope probes under dynamic mode imaging”, Spring Conference of the Korean Society of Mechanical Engineers – Micro/nano division, Busan, Korea, May 2016. 68. D. Lee, S. Kauh, and J. Lee, “Harnessing electrical readout for microcapillary tube string resonators with quartz tuning forks”, Spring Conference of the Korean Society of Mechanical Engineers – Micro/nano division, Busan, Korea, May 2016. 67. J. Song, S. Kim, and J. Lee, “Development of Fabrication Processes for Nanochannel Resonators towards High Resolution Mass Sensing Applications in Liquids”, The 18th Korean MEMS Conference, Jeju Island, Korea, April 2016. 66. J. Lee, J. Song, and J. Lee, “Nanotribological and wear characteristics of hydrogel nanotips and facile regeneration for atomic force microscope applications”, The 18th Korean MEMS Conference, Jeju Island, Korea, April 2016. 65. K. Kim, J. Lee, T. Kim, W. Kim, and J. Lee, “Development of liquid metal mirror for optical-lever detection of transparent hydrogel atomic force microscope cantilevers”, The 18th Korean MEMS Conference, Jeju Island, Korea, April 2016. 64. D. Lee, J. Kim, N. Cho, S. Kauh, and J. Lee, “Nanoliter level liquid density measurements using microtube resonance detection via quartz tuning fork”, The 18th Korean MEMS Conference, Jeju Island, Korea, April 2016. 63. S. Kim, J. Lee, and J. Lee, “Effect of scan parameters on the tip wear and imaging quality of hydrogel atomic force microscope cantilevers using non-contact mode imaging”, The 18th Korean MEMS Conference, Jeju Island, Korea, April 2016. 62. J. Song, J. Je, and J. Lee, “Towards multiscale fluidic channel networks via internal oxidation and oxide etching based on self-assembled silicon-on-nothing structures”, The 29th IEEE Conference on Micro Electro Mechanical Systems, Shanghai, China, January 2016. 61. I. Chae, F. Khan, J. Song, J. Lee, J. Lee, and T. Thundat, “Standoff infrared spectroscopy on energetic materials using hydrogel microcantilevers”, The 29th IEEE Conference on Micro Electro Mechanical Systems, Shanghai, China, January 2016. 60. S. Kim and J. Lee, “Development of hyperelastically stretchable strain gauge based on liquid metals and platinum catalyzed silicone elastomers”, Fall Conference of the Korean Society of Mechanical Engineers, Jeju Island, Korea, October 2015. 59. K. Kim, J. Lee, and J. Lee, “Liquid metal reflective coating for optical detection of transparent atomic force microscope cantilevers”, Fall Conference of the Korean Society of Mechanical Engineers, Jeju Island, Korea, October 2015. 58. S. Kim, and J. Lee, “Micro thermal sensor using florescent ref-shift of quantum-dot encapsulated hydrogel probe”, Fall Conference of the Korean Society of Mechanical Engineers, Jeju Island, Korea, October 2015. 57. J. Song, J. Lee, and J. Lee, “Fabrication of sub-20nm hydrogel cantilever tip using oxygen plasma ashing for high-resolution imaging”, Fall Conference of the Korean Society of Mechanical Engineers, Jeju Island, Korea, October 2015. 56. J. Lee, J. Song, and J. Lee, “Nanotribogical and wear characteristics of hydrogel nanotips and facile regeneration”, Fall Conference of the Korean Society of Mechanical Engineers, Jeju Island, Korea, October 2015. 55. J. Kim, J. Je, J. Song, K. Kim, S. Kim, and J. Lee, “Novel wafer-batch fabrication strategy for microfluidic resonators”, The 5th Canada-Korea Conference on Science and Technology, Calgary,

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Canada, July 2015. 54. J. Kim and J. Lee, “Novel wafer-level batch fabrication strategy for microfluidic resonators”, The 12th International Workshop on Nanomechanical Sensing, Auckland, New Zealand, July 2015. 53. S. Kim, J. Choi, B. Choi, and J. Lee, “Hyper-elastically stretchable strain gauges based on liquid metals and platinum-catalyzed silicone elastomers”, The 18th International Conference on Solid-State Sensors, Actuators and Microsystems, Anchorage, USA June 2015. 52. J. Lee, J. Je, J. Song, and K. Kim, “Novel wafer-level batch fabrication technique for microfluidic resonators”, Spring Conference of the Korean Society of Mechanical Engineers – Micro/nano division, Busan, Korea, May 2015. 51. J. Kim, J. Song, and J. Lee, “Microtube resonator for high resolution mass sensing in liquids”, The 17th Korean MEMS Conference, Jeju Island, Korea, April 2015. 50. J. Choi, S. Kim Lee, J. Lee, and B. Choi, “Development of hyperelastic strain gauges based on liquid metals and platinum catalyzed silicone elastomers”, The 17th Korean MEMS Conference, Jeju Island, Korea, April 2015. 49. S. Kim, J. Kim, J. Lee, and B. Choi, “Development of custom atomic force microscope combined with digital mask lithography”, The 17th Korean MEMS Conference, Jeju Island, Korea, April 2015. 48. J. Je and J. Lee, “Towards batch fabrication of nanochannels and suspended nanotubes based on silicon on nothing structures”, The 17th Korean MEMS Conference, Jeju Island, Korea, April 2015. 47. J. Song and J. Lee, “Hydrogel microcantilever, a superior AFM cantilever for the exploration of biological phenomena in cellular level”, The 17th Korean MEMS Conference, Jeju Island, Korea, April 2015. 46. J. Lee and J. Lee, “Shape, size and tip sharpness tuning of hydrogel microcantilevers via ultra-violet curing with elastomeric replica moulds”, The 17th Korean MEMS Conference, Jeju Island, Korea, April 2015. 45. J. Kim and J. Lee, “”, The 28th IEEE Conference on Micro Electro Mechanical Systems, Estoril, Portugal, January 2015. 44. J. Lee, “Hydrogel microcantilevers for atomic force microscopy applications”, The 16th International Scanning Probe Microscopy Conference, Seoul, Korea, July 2014. 43. J. Lee and I. Lee, “Development of hydrogel microcantilevers for localized material delivery applications”, The 11th International Workshop on Nanomechanical Sensing, Madrid, Spain, April 2014. 42. J. Song and J. Lee, “Development of low stiffness hydrogel microcantilevers for high-precision stiffness measurements of biological samples”, The 16th Korean MEMS Conference, Jeju Island, Korea, April 2014. 41. J. Kim and J. Lee, “Effects of XeF2 etch undercut on resonant characteristics of silicon dioxide microbridges”, The 16th Korean MEMS Conference, Jeju Island, Korea, April 2014. 40. I. Lee and J. Lee, “Development of hydrogel microcantilevers for local functional material delivery”, The 16th Korean MEMS Conference, Jeju Island, Korea, April 2014. 39. J. Je and J. Lee, “Development of liquid metal microheaters with reliable electrode configuration”, The 16th Korean MEMS Conference, Jeju Island, Korea, April 2014. 38. I. Lee and J. Lee, “Fabrication and characterization of all hydrogel cantilevers for atomic force microscopy applications”, The 27th IEEE Conference on Micro Electro Mechanical Systems, San Francisco, USA, January 2014. 37. J. Je and J. Lee, “Fabrication and characterization of liquid metal microheaters”, Fall

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Conference of the Korean Society of Mechanical Engineers, Kangwon, Korea, December 2013. 36. I. Lee, and J. Lee, “Fabrication of hydrogel atomic force microscope cantilevers using dynamic mask lithography”, Fall Conference of the Korean Society of Mechanical Engineers, Kangwon, Korea, December 2013. 35. W. Lee, J. Lee, and S. Kang, “Analysis of flow characteristics for viscosity sensing applications of suspended microchannel resonators”, Fall Conference of the Korean Society of Mechanical Engineers, Kangwon, Korea, December 2013. 34. I. Lee and J. Lee, “Highly uniform and controllable micropatterning of a hydrogel on microcantilever sensors”, The 17th International Conference on Solid-State Sensors, Actuators and Microsystems, Barcelona, Spain, June 2013. 33. J. Kim, B. J. Lee, W. P. King and J. Lee, “Optical heating and temperature sensing of heated microcantilevers using two-wavelength thermoreflectance”, The 10th International Workshop on Nanomechanical Sensing, California, USA, May 2013. 32. I. Lee and J. Lee, “One-step fabrication of hydrogel microcantilevers using dynamic mask photolithography”, The 10th International Workshop on Nanomechanical Sensing, California, USA, May 2013. 31. D. Estrada, Z. Li, S. Dunham, G. Choi, N. Wang, Y. Meng, F. Lian, J. Lee, J. Zuo, W.P. King, J.A. Rogers, D.G. Cahill, and E. Pop, “Thermal anisotropy of layer-by-layer assembled graphene films”, 2013 MRS Spring Meeting, California, USA, April 2013. 30. J. Kim, B. J. Lee, and J. Lee, “Thermal characterization of heated microcantilevers using two-wavelength laser thermoreflectance microscopy”, The 15th Korean MEMS Conference, Jeju, Korea, April 2013. 29. I. Lee and J. Lee, “Highly controllable local patterning of a hydrogel on microcantilevers”, The 15th Korean MEMS Conference, Jeju, Korea, April 2013. 28. J. Kim, S. Han, K. Park, B. J. Lee, W.P. King and J. Lee, “DC and AC electrothermal characterization of heated microcantilevers using scanning thermoreflectance microscopy”, The 26th IEEE Conference on Micro Electro Mechanical Systems, Taipei, Taiwan, January 2013. 27. N. Palombo, T. Walsh, J. Lee, and K. Park, “IMECE2012-89642 Experimental study of enhancement and quenching of plasmon controlled fluorescence using quantum dot – plasmonic nanoparticle mixture in aqueous medium”, ASME International Mechanical Engineering Congress & Exposition, Houston, Texas, 2012. 26. J. Kim and J. Lee, “DC and AC thermal characterization of heated microcantilevers using thermoreflectance microscopy”, Fall Conference of the Korean Society of Mechanical Engineers, Changwon, Korea, November 2012. 25. I. Lee and J. Lee, “Precision density and volume change measurements of ethanol-water binary mixtures using suspended microchannel resonators”, Fall Conference of the Korean Society of Mechanical Engineers, Changwon, Korea, November 2012. 24. I. Lee and J. Lee, “Measurement of mixing ratio and volume change of ethanol-water binary mixtures using suspended microchannel resonators”, The 11th IEEE SENSORS, Taipei, Taiwan, October 2012. 23. I. Lee and J. Lee, “Quality factor and vibration amplitude based viscosity measurements using suspended microchannel resonators”, The 11th IEEE SENSORS, Taipei, Taiwan, October 2012. 22. I. Lee and J. Lee, “Low volume and high precision viscosity measurement with suspended microchannel resonators”, The 9th International Workshop on Nanomechanical Sensing, Mumbai, India, June 2012. 21. J. Kim, I. Lee and J. Lee, “Bimodal mass sensing using suspended microchannel resonators”,

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The 14th Korean MEMS Conference, Jeju, Korea, April 2012. 20. I. Lee and J. Lee, “Measurement uncertainties in resonant characteristics of MEMS resonators”, The 14th Korean MEMS Conference, Jeju, Korea, April 2012. 19. J. Lee, G. Chen, W. Shen, K. Payer, T. Burg, W. Rodriguez, M. Toner, and S. Manalis, “Weighing nanoparticles and viruses using suspended nanochannel resonators”, The 24th IEEE Conference on Micro Electro Mechanical Systems, Cancun, Mexico, 2011. 18. J. Lee and S.R. Manalis, “Second eigenmode operation of suspended microchannel resonators for high precision flow through mass sensing”, Hilton Head Workshop 2010: A Solid-State Sensors, Actuators, and Microsystems Workshop, Hilton Head Island, SC, 2010. 17. Y. Liu, N. Privorotskaya, J. Lee, H. Zeng, J.A. Carlisle, A. Radadia, L. Millet, R. Bashir, and W.P. King, “Rapid thermal lysis of cells using silicon-diamond microcantilever heaters”, The 7th International Workshop on Nanomechanical Cantilevers, Banff, Canada, 2010. 16. C.M. Spadaccini, E.V. Mukerjee, J. Lee, and W.P. King, “Rapid thermal analysis of energetic materials with microfabricated differential scanning calorimeters”, The 15th International Conference on Solid-State Sensors, Actuators, and Microsystems, Denver, CO, 2009. 15. J. Lee, C.M. Spadaccini, E.V. Mukerjee, and W.P. King, “Suspended membrane single crystal silicon micro hotplate for differential scanning calorimetry”, The 22nd IEEE Conference on Micro Electro Mechanical Systems, Sorrento, Italy, 2009. 14. K. Park, J. Lee, W.P. King, and R. Bhargava, “Femtogram-level spectroscopic analysis using functional self-cleaning scanning probe tips”, The 59th Annual Pittsburgh Conference and Exposition on Analytical Chemistry and Applied Spectroscopy, New Orleans, LA, 2008. 13. J. Lee and W.P. King, “Heated atomic force microscope cantilevers for nanoscience and nanoengineering”, The 10th International scanning probe microscopy conference, Seattle, WA, 2008. 12. D. Wang, T. Okada, R. Szoszkiewicz, S.C. Jones, M Lucas, J. Lee, W.P. King, S.R. Marder, and E. Riedo, “Reversible nanoscale local wettability modifications by thermochemical nanolithography”, Materials Research Society Symposium, v. 1059, 2008. 11. Y. Hua, C.L. Henderson, J. Lee, and W.P. King, “Nanolithography on crosslinked polymers using heated AFM cantilever probes”, The 51st International Conference on Electron, Ion, and Photon Beam Technology and Nanofabrication, Denver, CO, 2007. 10. J. Lee and W.P. King, “Array of microcantilever heaters with integrated piezoresistors”, IEEE International Conference on Nanotechnology 2007, Hong Kong, 2007. 9. J. Lee, F.T. Goericke, and W.P. King, “Temperature dependent mechanical properties of doped silicon microcantilevers”, The 14th International Conference on Solid-State Sensors, Actuators, and Microsystems, Lyon, France, 2007. 8. K. Park, J. Lee, Z.M. Zhang, and W.P. King, “Nanotopographic imaging using heated microcantilever in tapping mode”, The 14th International Conference on Solid-State Sensors, Actuators, and Microsystems, Lyon, France, 2007. 7. J. Lee, H. Hunter, F.T. Goericke, N. Naik, M.G. Allen, A. Glezer, and W.P. King, “IPACK2007- 31291 Measurements of microjet cooling and phase change characteristics using microcantilever heaters”, The ASME/Pacific Rim Technical Conference and Exhibition on Integration and Packaging of MEMS, NEMS, and Electronic Systems, Vancouver, BC, 2007. 6. J. Lee, T. Beechem, K. Park, Z.M. Zhang, S. Graham, and W.P. King, “Thermal and mechanical characterization and calibration of heated microcantilevers”, Hilton Head Workshop 2006: A Solid-State Sensors, Actuators, and Microsystems Workshop, Hilton Head Island, SC, 2006. 5. J. Lee, K. Naeli, H. Hunter, J. Berg, T.L. Wright, C. Courcimault, N. Naik, M.G. Allen, O.

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Brand, A. Glezer, and W.P. King, “IMECE2005-81732 Micro-cantilever based metrology tool for flow characterization of liquid and gaseous micro/nanojets”, ASME International Mechanical Engineering Congress & Exposition, Orlando, FL, 2005. 4. N. Naik, C. Courcimault, J. Berg, H. Hunter, J. Lee, K. Naeli, T. Wright, M.G. Allen, O. Brand, A. Glezer and W.P. King, “IMECE2005-81698 Fabrication and characterization of liquid and gaseous micro- and nanojets”, ASME International Mechanical Engineering Congress & Exposition, Orlando, FL, 2005. 3. J. Lee, T.L. Wright, M.R. Abel, E.O. Sunden, A. Marchenkov, S. Graham, and W.P. King, “IPACK2005- 73456 Characterization of heated atomic force microscope cantilevers in air and vacuum”, The ASME/Pacific Rim Technical Conference and Exhibition on Integration and Packaging of MEMS, NEMS, and Electronic Systems, San Francisco, CA, 2005. 2. A. Hammiche, M. Reading, T.L. Wright, J. Lee, W.P. King, H.M. Pollock, and R. Shetty, “Nanothermal analysis (n-TA) and photothermal IR micro-spectroscopy (PTMS), at sub-250 nm spatial resolution”, STM 2005–The 13th International Conference on Scanning Tunneling Microscopy/Spectroscopy and Related Techniques, Sapporo, Japan, 2005. 1. W.P. King, J. Lee, J. Berg, and A. Glezer, “Microcantilever measurements in microscale liquid jets”, 2004 Meeting of the American Physical Society, Division of Fluid Dynamics, Seattle, WA, 2004. PATENTS 19. J. Lee, J. Ko, K. Park, and A. Zarzembski, “Method of producing large size of hydrogel probe and hydrogel probe thereof”, 10-2005911 (Korea). 18. J. Lee and Y. Yoon, “Polymer resonating structure and manufacturing method of the same”, 10-1941640 (Korea) 17. J. Lee, D. Lee, S. Kauh, and J. Kim, “Micro-fluid measuring apparatus with an actuator and a tuning fork,” 10-1820101 (Korea) 16. J. Lee and S. Kim, “Thermocouple,” 10-1780948 (Korea). 15. J. Lee, K. Kim, S. Kim, and J. Lee, “Cantilever for scanning probe microscopy,” 10-1743434 (Korea). 14. J. Lee, B. Choi, S. Kim, and J. Choi, “Patterning method of liquid metal using micro cantilever probe,” 10-1687371 (Korea). 13. J. Lee, K. Kim, and S. Kim, “Micro-chip packing apparatus,” 10-1664381 (Korea). 12. J. Lee and J. Kim, “Silicon microchannel resonator and fabrication method of the same,” PCT/KR2015/005590. 11. J. Lee, S. Kim, and J. Lee, “Method of manufacturing microcantilever having functional probe,” 10-16812311 (Korea), US 10132832 B2. 10. J. Lee, J. Song, and I. Lee, “Method of manufacturing microcantilever,” 10-1601742 (Korea), PCT/KR2014/012112. 9. J. Lee and J. Kim, “Microchannel resonator and method for manufacturing same,” 10-1568761 (Korea), US 10093535 B2. 8. J. Lee, M. Lee, and J. Jeong, “Divided assembly type plaster cast manufacturing apparatus and its method using 3 dimensional printing,” 10-1599950 (Korea). 7. J. Lee and J. Kim, “Microchannel resonator and manufacturing method of the same,” 10-1568758 (Korea). 6. J. Lee and J. Kim, “Microchannel resonator and manufacturing method of the same,” 10-1509610 (Korea).

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5. J. Lee and J. Je, “Liquid metal circuit device and control method liquid metal circuit device,” 10-1489900 (Korea). 4. J. Lee and I. Lee, “Method of manufacturing microcantilever,” 10-1450749 (Korea), US 10202276 B2, 13896608.0 (EPO) 3. S. Son, S. Byun, A. K. Bryan, T. Burg, A. Gulati, J. Lee, S. Manalis, Y. Weng, “Apparatus and method for measuring buoyant mass and deformability of single cells,” US 8935911 B2 (2015). 2. W.P. King and J. Lee, “Device for calorimetric measurement,” US 8931950 B2 (2015). 1. W.P. King, J. Lee, and F. Goericke, “Microcantilever heater-thermometer with integrated temperature compensated strain sensor,” US 7928343 B2 (2011). LICENSING 2. Fabrication method of hydrogel atomic force microscope cantilevers (Knowhow), Park Systems, KRW 10,000,000 (2016) 1. Fabrication method of microcantilevers (Exclusive), Park Systems, KRW 11,000,000 (2015) INVITED TALKS 53. “Alternative routes to fluidic channel integrated resonators”, University of Michigan, Department of Electrical Engineering (2020.2.12) 52. “Archimedes principle: Application for detection of liquid borne particulate matters”, Kwangwoon University, Human IoT Research Center (2020.1.21) 51. “Archimedes principle: Application for detection of liquid borne particulate matters”, Korea Advanced Institute of Science and Technology (2020.1.15) 50. “Fluidic channel integrated resonators towards ultra-sensitive detection of liquid-borne particles”, Michigan State University, Department of Mechanical Engineering (2019.8) 49. “Fluidic channel integrated resonators via traditional microfabrication and unconventional fabrication”, Yonsei University, Department of Mechanical Engineering (2019.5) 48. “Micro patterning of gallium-based liquid metals for wearable device applications”, Sogang University (2018.11) 47. “High-performance mechanical transducers via unconventional materials and fabrication”, Seoul National University, Department of Physics and Astronomy (2018.11) 46. “Liquid metal micro-patterning for flexible and wearable device applications”, The 2nd Regional Symposium of the Society of Micro and Nano Systems, Korea Advanced Institute of Science and Technology (2018.10) 45. “Microscale liquid metal patterning for flexible and wearable devices”, International Workshop on Micro/Nano-engineered Smart Sensors & Devices, Korea Advanced Institute of Science and Technology (2018.09) 44. “Unconventional manufacturing processes and materials for high-performance mechanical transducer platform”, Gwangju Institute of Science and Technology, School of Materials Science and Engineering (2018.02) 43. “Unconventional manufacturing processes and materials for high-performance mechanical transducer platform”, Kwangwoon University, Department of Electronic Engineering (2018.02) 42. “Unconventional manufacturing processes and materials for high-performance mechanical transducer platform”, Korea Advanced Institute of Science and Technology, Department of Mechanical Engineering (2017.12) 41. “Hydrogel microelectromechanical systems”, The 4th International Conference on Advanced Electromaterials (2017.11)

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40. “Unconventional micro-/nanofabrication materials and processes”, The 30th International Microprocesses and Nanotechnology Conference (2017.11) 39. “Stepping away from traditional micro-/nanofabrication”, University of Calgary, Department of Mechanical and Manufacturing Engineering (2017.08) 38. “Hydrogel atomic force microscope cantilevers”, SPM USERS FORUM, The 48th Korean Society of Microscopy Annual Conference (2017.04) 37. “Effort towards high-performance mechanical transducers via unconventional materials and fabrication”, The 14th International Workshop on Nanomechanical Sensing (2017.04) 36. “Effort towards high-performance mechanical transducers via unconventional materials and fabrication”, The 19th Korean MEMS Conference (2017.03) 35. “Effort towards high-performance mechanical transducers via unconventional materials and fabrication”, Yonsei University, Department of Mechanical Engineering (2017.03) 34. “Effort towards high-performance mechanical transducers via unconventional materials and fabrication”, University of Calgary, Department of Mechanical and Manufacturing Engineering (2017.02) 33. “Unconventional fabrication processes and materials for high-performance mechanical transducer platforms”, Seoul National University, Department of Mechanical and Aerospace Engineering (2016.11) 32. “Measurement of micro-/nanoparticles using fluidic channel integrated resonant mass sensors”, International Intellectual Property Training Institute (2016.07) 31. “Toward single molecule mass spectroscopy using microfabricated mechanical resonators”, Korea Institute of Machinery and Materials (2016.03) 30. “Hollow microtube resonators – High resolution mass sensing and beyond”, Korea Institute of Machinery and Materials (2016.03) 29. “Pulled microcapillary resonators with electrical readout using a quartz tuning fork”, University of Alberta, Department of Chemical and Materials Engineering (2016.02) 28. “Multifunctional hydrogel nanoprobes”, Ulsan National Institute of Science and Technology, The 1st UNIST-Sogang Joint Workshop (2015.08) 27. “Unconventional processes and materials for microfabricated mechanical resonators”, University of Alberta, Department of Chemical and Materials Engineering (2015.07) 26. “Hollow tube resonators for high resolution mass sensing in liquids”, Korea Institute of Materials Science (2015.07) 25. “Hollow tube resonators for high resolution mass sensing in liquids”, The Catholic University of Korea (2015.04) 24. “Hollow tube resonators for high resolution mass sensing in liquids”, Korea Institute of Science and Technology (2015.04) 23. “Hollow tube resonators for high resolution mass sensing in liquids”, Kwangwoon University, Department of Electronic Engineering (2014.12) 22. “Hollow tube resonators for mass sensing applications in liquids”, Nanyang Technological University, Department of Materials Science and Engineering (2014.10) 21. “Towards single molecule mass and force spectroscopy using microfabricated mechanical resonators”, Pohang University of Science and Technology, Department of Chemical Engineering (2014.10) 20. “Hydrogel microcantilevers for atomic force microscopy applications”, Park Systems (2014.09) 19. “Hollow tube nanofluidic resonators for sub-attogram mass sensing in liquid”, Korea University, Department of Mechanical Engineering (2014.08)

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18. “Hollow tube nanofluidic resonators for sub-attogram mass sensing in liquid”, Myongji University, Department of Mechanical Engineering (2014.08) 17. “Hollow tube nanofluidic resonators for sub-attogram mass sensing in liquid”, University of Alberta, Department of Chemical and Materials Engineering (2014.08) 16. “Pioneering hydrogel MEMS (Microelectromechanical systems)-Hydrogel micropatterning via maskless lithography”, University of Alberta, Department of Chemical and Materials Engineering (2014.08) 15. “Hollow tube nanofluidic resonators for sub-attogram mass sensing in liquid”, Ulsan National Institute of Science and Technology, School of Mechanical and Advanced Materials Engineering (2014.06) 14. “Pioneering hydrogel MEMS (Microelectromechanical systems): Hydrogel micropatterning using dynamic mask lithography”, Korea Institute of Machinery and Materials (2014.04) 13. “Hollow tube nanofluidic resonators for sub-attogram mass sensing in liquid”, HCT (2014.04) 12. “Pioneering hydrogel MEMS (Microelectromechanical systems): Hydrogel micropatterning using dynamic mask lithography”, Korea Advanced Institute of Science and Technology, Department of Mechanical Engineering (2013.11) 11. “Pioneering hydrogel microelectromechanical systems (MEMS)”, Sophia University (2013.11) 10. “Pioneering hydrogel MEMS (Microelectromechanical systems): Hydrogel micropatterning using dynamic mask lithography”, Pohang University of Science and Technology, Department of Mechanical Engineering (2013.10) 9. “Micro- and nanoscale particle and fluid measurements with high-Q fluidic beam resonators”, The Catholic University of Korea (2012.06) 8. “Micro- and nanoscale particle and fluid measurements with high-Q fluidic beam resonators”, Chonnam University, Department of Mechanical Engineering (2012.05) 7. “Recent advances in particle and cell sizing with high-Q fluidic beam resonators”, Pohang University of Science and Technology, Department of Chemical Engineering (2011.11) 6. “Recent advancements in particle and cell sizing using high-Q fluidic resonators (SMRs)”, University of Alberta, Department of Chemical and Materials Engineering (2011.08) 5. “Recent advancements in particle and cell sizing using high-Q fluidic resonators (SMRs)”, Seoul National University, YMEMS summer Workshop (2011.07) 4. “Recent advancements in particle and cell sizing with suspended microchannel resonators”, University of Illinois at Urbana-Champaign, Department of Mechanical Science and Engineering (2011.01) 3. “Microfabricated cantilevers: A promising tool for biotech- and nanotechnology”, Sogang University, Department of Mechanical Engineering (2010.05) 2. “Recent advancements in particle and cell sizing with suspended microchannel resonators”, University of Rhode Island, Department of Mechanical, Industrial and Systems Engineering (2009.11) 1. “Microcantilever sensors with integrated functional elements”, Massachusetts Institute of Technology, Department of Biological Engineering (2008.06) CURRENT & PREVIOUS FUNDED PROJECTS (Ongoing projects highlighted in blue) 13. Co-PI, “BRL for Modeling and Control of Neuronal Signal Transmission based on Rapid and Precise Cooling Technology”, National Research Foundation, KRW 1,341,000,000: 06/01/2017 – 02/29/2020 with T. Kim (PI) at Ulsan National Institute of Science and Technology. 12. PI, “Organic-inorganic hybrid nanoscale 3D printing for reversible and reconfigurable 4D

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nanostructures”, National Research Foundation, KRW 900,000,000: 03/01/2017 – 02/29/2020. 11. PI, “Commercialization of hydrogel based atomic force microscope microcantilevers”, Commercializations Promotion Agency for R&D Outcomes, KRW 340,000,000: 04/27/2015 – 04/26/2017. 10. PI, “Collaboration research and research exchange for development of ultra sensitive detection platforms for matters suspended in liquids”, National Research Foundation, KRW 30,000,000: 03/01/2015 – 02/28/2017. 9. PI, “Large area nanochannel fabrication based on high temperature silicon self assembly for zeptogram level mass sensor development”, National Research Foundation, KRW 400,000,000: 11/01/2014 – 10/31/2016. 8. PI, “Standardization infra establishment for flexible seminconductors”, Korea Evaluation Institute of Industrial Technology, KRW 40,000,000: 05/01/2014 – 04/30/2015. 7. PI, “Fabrication and application of hydrogel atomic force microscope cantilevers for stiffness measurements of biological samples via digital mask lithography”, National Research Foundation, KRW 180,000,000: 12/01/2013 – 11/30/2016. 6. PI, “Fabrication and application of microelectromechanical systems (MEMS) cantilever sensors based on hydrogel and dynamic mask lithography”, Korea Foundation for the Advancement of Science and Creativity, KRW 10,000,000: 09/02/2013 – 02/28/2014. 5. PI, “Development of heater-integrated nanofluidic resonators for gravimetric and thermal measurements of nanoparticles”, National Research Foundation, KRW 390,000,000: 09/01/2011 – 08/31/2014. 4. Co-PI, “Development of status monitoring and therapeutic system for urologic diseases”, Korea Health Industry Development Institute, KRW 700,000,000: 05/01/2011 – 03/31/2016, with B. Choi (PI) at Sogang University. 3. PI, “Development of sub-attogram resolution nanofluidic resonator mass sensors for single virus detection”, National Research Foundation, KRW 150,000,000: 05/01/2011 – 04/30/2014. 2. PI, “High precision nanoparticle sizing metrology development”, Sogang University, KRW 14,000,000: 11/01/2011 – 10/31/2012. 1. Co-PI, “Development of highly reliable bio-compatible wireless charging super battery”, National Research Foundation, KRW 100,000,000: 09/01/2010 – 06/30/2011, with B. Choi (PI) at Sogang University. MEMBERSHIP & SERVICE Membership: The Korean Society of Mechanical Engineering (KSME), The Society of Micro and Nano Systems (SMNS), The Korean Sensors Society (KSS), The Korean Society of Noise and Vibration Engineering (KSNVE), American Physical Society (APS)

Journal Editor: Micro and Nano Systems Letters (2018–Present), American Journal of Engineering and Applied Sciences (2016–Present), International Journal of Precision Engineering and Manufacturing (2017–Present), JMST Advances (2018–Present)

Journal Reviewer: Measurement (2015–Present), Journal of Microelectromechanical Systems (2014–Present), Analytical Chemistry (2014–Present), Sensors and Actuators, B-Chemical (2013–Present), International Journal of Thermal Sciences (2013–Present), Micro and Nano Systems Letters (2013–Present), Lab on a Chip (2012–Present), Proceedings of Royal Society A (2012–Present), Journal of Heat Transfer (2012–Present), Nanotechnology (2012–Present), Journal of Mechanical Science and Engineering (2012–Present), International Journal of Precision

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Engineering and Manufacturing (2012–Present), IEEE Sensors (2008–Present), Sensors and Actuators, A-Physical (2008–Present), Review of Scientific Instruments (2012–Present)

International Workshop Organizer: The 15th International Workshop on Nanomechanical Sensing (NMC 2018), 2018

Conference Committee Session Chair: Biotronics Conference (2014), KSME Conference (2012, 2013, 2014, 2015), KMEMS Conference (2013, 2014, 2015, 2016)

Convenor of International Electrotechnical Commission (IEC) SC47E/WG1 – Discrete semiconductor devices (sensors)

Assistant secretary of International Electrotechnical Commission (IEC) TC124 – Wearable electronic devices and technologies

COURSES TAUGHT Undergraduate MEE2006: Engineering Mathematics I (S2012, S2013, S2014, S2015, S2016), MEE2007: Engineering Mathematics II (F2012, F2013, F2014, F2015, F2017) MEE2025: Model Design and Fabrication (S2014, S2018), MEE2026: 2D Computer Aided Design (2D CAD) (S2014, F2014), MEE3015: Creative Engineering Design I (F2010), MEE4001: Product Design Analysis II – Finite Element Analysis (S2011, S2012), MEE4014: MEMS Design and Fabrication (S2011, S2018) MEE4024: Measurement and Signal Processing (F2012, F2013, S2015, S2016, F2017), ME211: Thermodynamics (S2019, S2020).

Graduate MEE5006: Introduction to the Finite Element Method (F2010), MEE6513: Introduction to Nanotechnology and Nanoengineering (F2011, S2013, F2015), ME505: Sensor and Instrumentation Engineering (F2018, F2019)

STUDENT ADVISING Graduate Research Advisor for: Sukbom Son (ME, MS Program), 2020~ Juhee Ko (ME, MS Program), 2019~ Taeyeong Kim (ME, MS and PhD Integrated Program), 2019~ Jinhyeok Seo (ME, Ph.D. Program), 2019~ Bora Lee (ME, MS Program), 2017–2018 Undergraduate Research Advisor for: Kwangseok Kim (Major in ME), 2014–2015 Daehwan Kim (Major in ME), 2014–2015 Bora Lee (Major in ME), 2014, 2016–2017 Junhyuk Lee (Major in ME), 2016–2017 Juhee Ko (Major in ME), 2016–2018

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Alumni: Il Lee (ME, MS), 2014 – Samsung Electronics Joohyun Kim (ME, MS), 2015 – Hyundai Kefico Jinsol Je (ME, MS), 2015 – Samsung Electronics Jaeseol Lee (ME, MS), 2016 – Samsung Electronics Jungki Song (ME, MS), 2016 – Ph.D. program at Massachusetts Institute of Technology Kwangseok Kim (ME, MS), 2017 – Samsung Electronics Yeowon Yoon (ME, MS), 2018 – Ph.D. program at Purdue University

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REFERENCES William P. King, Ph.D. Professor, Ralph A. Anderson Endowed Chair Department of Mechanical Science and Engineering Department of Materials Science and Engineering Department of Electrical and Computer Engineering University of Illinois at Urbana-Champaign 4409 Mechanical Engineering Laboratory Urbana, IL 61801, USA Phone: +1-217-244-3864, Fax: +1-217-244-9956 E-mail: [email protected] Scott R. Manalis, Ph.D. Andrew and Erna Viterbi Professor of Biological Engineering Koch Institute for Integrative Cancer Research Departments of Biological and Mechanical Engineering Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge, MA 02139, USA Phone: +1-617-253-5039, Fax: +1-617-253-5102 E-mail: [email protected] Thomas Thundat, Ph.D. Empire Innovation Professor Department of Chemical and Biological Engineering University of Buffalo 310 Furnas Hall, Buffalo, NY 14260 Phone: +1-716-645-3209 E-mail: [email protected] Michael Roukes, Ph.D. Robert M. Abbey Professor Physics, Applied Physics, and Biological Engineering California Institute of Technology 1200 E. California Blvd, MC149-33 Pasadena, CA 91125, USA Phone: +1-626-395-2933 E-mail: [email protected] John E. Sader, Ph.D. Professor School of Mathematics and Statistics Richard Berry Building, Room G22 The University of Melbourne Victoria 3010, Australia Phone: +61-3-8344-4042, Fax: +61-3-8344-4599

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E-mail: [email protected]