Published October 28, 2003 | Version Published
Book Section - Chapter Open

Spectroscopic studies of individual plasmon resonant nanoparticles

  • 1. ROR icon University of California, San Diego
  • 2. ROR icon California Institute of Technology
  • 3. ROR icon Seashell Technology (United States)

Contributors

Abstract

We present a detailed description of the apparatus and techniques that we have utilized in our experimental study of individual plasmon resonant nanoparticles, along with a brief description of some major results. The apparatus consists of a spectroscopic system combined with a modified darkfield microscope, which enables the user to sequentially select individual resonant nanostructures in the microscopic field of view for spectroscopic study. Plasmon resonant nanostructures scatter light elastically, and typically have very large scattering cross-sections at their resonant optical wavelengths. In general, spectra can be obtained with acquisition times between .1 to 30 seconds, and color images can be captured using consumer digital color cameras. Spheres, tetrahedrons, and pentagonal platelets were fabricated using colloidal chemistry techniques. To produce highly anisotropic structures such as nanorods and "barbells", templates were used. Many of these nanostructures have been individually spectroscopically characterized, and their spectra correlated with their shape and size as determined by transmission electron microscope (TEM). The unique shape, size, composition, and dielectric surroundings of the individual plasmon resonant nanostructures determine their plasmon resonant behavior. We will show how the composition of the substrate on which the particles are immobilized and the dielectric of the surrounding medium have a significant effect on the plasmon resonance of the individual particles.

Additional Information

© 2003 Society of Photo-Optical Instrumentation Engineers (SPIE). We would like to thank The National Center for Microscopy and Imaging Research (NCMIR) at UCSD, and Andy Pommer of the UCSD Physics Machine Shop. We would also like to acknowledge the support of the NSF DBI 9876651, NIH PHS HG0195901, the NIH SBIR R43GM62097, and the Lounsbery Foundation.

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Additional details

Identifiers

Eprint ID
93090
Resolver ID
CaltechAUTHORS:20190221-110521756

Funding

NSF
DBI-9876651
NIH
HG0195901
NIH
R43GM62097
Richard Lounsbery Foundation

Dates

Created
2019-02-28
Created from EPrint's datestamp field
Updated
2021-11-16
Created from EPrint's last_modified field

Caltech Custom Metadata

Series Name
Proceedings of SPIE
Series Volume or Issue Number
5221