Shaun M. Williams, Ph.D.

Affiliations: 
2006 Ohio State University, Columbus, Columbus, OH 
Area:
Plasmonics
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"Shaun Williams"
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James V. Coe grad student 2006 Ohio State
 (Characteristics and applications of the infrared enhanced transmission of metallic subwavelength arrays.)
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Publications

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Coe JV, Williams SM, Bowen KH. (2008) Photoelectron spectra of hydrated electron clusters vs. cluster size: Connecting to bulk International Reviews in Physical Chemistry. 27: 27-51
Coe JV, Rodriguez KR, Teeters-Kennedy S, et al. (2007) Metal films with arrays of tiny holes: Spectroscopy with infrared plasmonic scaffolding Journal of Physical Chemistry C. 111: 17459-17472
Teeters-Kennedy S, Williams SM, Rodriguez KR, et al. (2007) Extraordinary infrared transmission of a stack of two metal micromeshes Journal of Physical Chemistry C. 111: 124-130
Rodriguez KR, Williams SM, Young MA, et al. (2006) Carbon chains and the (5,5) single-walled nanotube: structure and energetics versus length. The Journal of Chemical Physics. 125: 194716
Teeters-Kennedy SM, Rodriguez KR, Rogers TM, et al. (2006) Controlling the passage of light through metal microchannels by nanocoatings of phospholipids. The Journal of Physical Chemistry. B. 110: 21719-27
Coe JV, Williams SM, Rodriguez KR, et al. (2006) Extraordinary IR transmission with metallic arrays of subwavelength holes. Analytical Chemistry. 78: 1384-90
Williams SM, Coe JV. (2006) Dispersion study of the infrared transmission resonances of freestanding Ni microarrays Plasmonics. 1: 87-93
Rodriguez KR, Shah S, Williams SM, et al. (2004) Enhanced infrared absorption spectra of self-assembled alkanethiol monolayers using the extraordinary infrared transmission of metallic arrays of subwavelength apertures. The Journal of Chemical Physics. 121: 8671-5
Williams SM, Rodriguez KR, Teeters-Kennedy S, et al. (2004) Scaffolding for nanotechnology: Extraordinary infrared transmission of metal microarrays for stacked sensors and surface spectroscopy Nanotechnology. 15: S495-S503
Williams SM, Stafford AD, Rogers TM, et al. (2004) Extraordinary infrared transmission of Cu-coated arrays with subwavelength apertures: Hole size and the transition from surface plasmon to waveguide transmission Applied Physics Letters. 85: 1472-1474
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