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Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents By Jeffrey Powell Physics REU Summer 2009 Partially Funded Through NSF

Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

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Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents. By Jeffrey Powell Physics REU Summer 2009 Partially Funded Through NSF. Nanotechnology. Reside at the edge of quantum mechanics and condensed matter Can act and behave as a “supermolecule” - PowerPoint PPT Presentation

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Page 1: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

By Jeffrey Powell

Physics REU Summer 2009

Partially Funded Through NSF

Page 2: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Nanotechnology

Reside at the edge of quantum

mechanics and condensed matter

Can act and behave as a

“supermolecule”

Large ratio of surface area to volume

Tip of the Iceberg

Page 3: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Synthesis of Gold Nanoparticles

Inverse Micelle Method-Soaps and Salts

Reduction of Gold Salt to grow

nanocrystals

Ligands added to stabilize

Micellar Diffusion structures nanocrystals

Page 4: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Digestive Ripening

Reflux solution of polydisperse particles

Forms monodisperse solution

Post Digestive Ripening

Pre Digestive Ripening

Page 5: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Alkane Ligated Gold Particle

Au

Au3850(C12SH)350

Page 6: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Solubility Tests

Dissolved in alkane solvents

Centrifuge at 12000g acceleration

Take UV-Vis absorbance data on the

supernatant

Raw data converted into concentration of

gold in solution

Page 7: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Data

Page 8: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Data

Page 9: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

“Like Dissolves Like”

Thiol chain length influences

solubility

Gold concentration peaks where

solvent similar to ligand

Page 10: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Data

Page 11: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Data

Page 12: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

“Like Does Not ALWAYS Dissolve Like”

Peaks not where expected

Unknown forces at work

Page 13: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Struggles

Separation of two-phase system

Melting point of hexadecane thiol

Stability of particles

Page 14: Measuring the Solubility of Ligated Gold Nanoparticles in Hydrocarbon Solvents

Conclusion

Suspension of particles acting as a

thermal reversible solution

Future Work