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Maneuvering the Surface Plasmon Resonance of Silver Nanostructures through Shape-Controlled Synthesis

The Journal of Physical Chemistry B · 2006 · Vol. 110(32) · pp. 15666–15675
Benjamin J. WileySang Hyuk ImZhiyuan LiJoeseph McLellanAndrew R. SiekkinenYounan Xia

Abstract

Silver nanostructures are containers for surface plasmons - the collective oscillation of conduction electrons in phase with incident light. By controlling the shape of the container, one can control the ways in which electrons oscillate, and in turn how the nanostructure scatters light, absorbs light, and enhances local electric fields. With a series of discrete dipole approximation (DDA) calculations, each of a distinctive morphology, we illustrate how shape control can tune the optical properties of silver nanostructures. Calculated predictions are validated by experimental measurements performed on nanocubes with controllable corner truncation, right bipyramids, and pentagonal nanowires. Control of nanostructure shape allows optimization of plasmon resonance for molecular detection and spectroscopy.

Gold and Silver Nanoparticles Synthesis and ApplicationsPlasmonic and Surface Plasmon ResearchAdvanced biosensing and bioanalysis techniquesDiscrete dipole approximationNanostructurePlasmonSurface plasmon resonanceMaterials scienceSurface plasmonDipoleElectronResonance (particle physics)Nanowire

MeSH terms

Particle SizeSilverSurface Plasmon ResonanceNanostructures

Funding

  • Division of Materials Research
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