1999
DOI: 10.1021/jp984406y
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Nanosphere Lithography:  Surface Plasmon Resonance Spectrum of a Periodic Array of Silver Nanoparticles by Ultraviolet−Visible Extinction Spectroscopy and Electrodynamic Modeling

Abstract: In this paper we measure the optical extinction spectrum of a periodic array of silver nanoparticles fabricated by nanosphere lithography (NSL) and present detailed comparisons of the results with predictions of electrodynamic theory. The silver nanoparticles are small (∼100 nm) compared to the wavelength of light but too large to have their optical properties described adequately with a simple electrostatic model. We make use of the discrete dipole approximation (DDA), which is a coupled finite element method… Show more

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Cited by 317 publications
(303 citation statements)
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“…It should be pointed out that these arrays consist of naked metallic clusters as no organic molecules are bound to them for interparticle separation. Schatz and coworkers (145) have accurately modeled the absorption spectra by the discrete dipole approximation and showed a strong dependence on the particle shape, substrate, and surrounding medium.…”
Section: Assembly Of Metal Nanoparticles and Their Collective Propertiesmentioning
confidence: 99%
“…It should be pointed out that these arrays consist of naked metallic clusters as no organic molecules are bound to them for interparticle separation. Schatz and coworkers (145) have accurately modeled the absorption spectra by the discrete dipole approximation and showed a strong dependence on the particle shape, substrate, and surrounding medium.…”
Section: Assembly Of Metal Nanoparticles and Their Collective Propertiesmentioning
confidence: 99%
“…[7][8] Until now, the field of colloidal lithography has remained very active and increasingly complex structures have been-and are continued to be prepared in nanoscale dimensions, ranging from rings, discs and crescent-shaped particles to bowls, wells, or needles. [9][10] A plethora of applications have been demonstrated for colloidal lithography-based structure arrays that exploit different properties inherent to the process.…”
Section: General Procedures 212 62 Materials 215 63 Experimental Dementioning
confidence: 99%
“…[36][37][38][39][40][41][42][43][44] While electrostatic methods can provide some level of insight, 45 complete electromagnetic solvers are needed to obtain accurate results. Many groups have developed methods of solving Maxwell's equations to investigate nonregular plasmon resonant particles in the 100-200 nm size range; [46][47][48] however, although particles of this size provide large SCS's at the plasmon resonance, the resonances are very broad and the field enhancement in the vicinity of the particles is relatively small.…”
Section: Introductionmentioning
confidence: 99%