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Voltage-Induced Adsorbate Damping of Single Gold Nanorod Plasmons in Aqueous Solution
78
Citations
45
References
2012
Year
Materials SciencePlasmonicsChemical EngineeringPlasmon DampingEngineeringMetal NanoparticlesNanomaterialsNanotechnologyAqueous SolutionAnion AdsorptionApplied PhysicsSurface-enhanced Raman ScatteringVoltage-induced Adsorbate DampingPlasmonic CatalysisNanofabricationChemistryGold NanoparticlesPlasmonic Material
Unbiased gold nanoparticles are negatively charged in aqueous solution but not hydrated. Optical spectroscopy of voltage-clamped single gold nanoparticles reveals evidence that anion adsorption starts at positive potentials above the point of zero charge, causing severe but reversible plasmon damping in combination with a spectral red shift exceeding the linear double layer charging effect. Plasmon damping by adsorbate is relevant for the use of nanoparticles in catalysis, in biodiagnostics, and in surface enhanced Raman scattering.
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