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Volumn 12, Issue 9, 2012, Pages 4784-4790
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Optical absorption engineering in stacked plasmonic Au-SiO 2-Pd nanoantennas
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Author keywords
absorption enhancement; Localized surface plasmon resonance; nanoantenna; palladium; plasmon enhanced chemistry
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Indexed keywords
ABSORPTION EFFICIENCY;
ABSORPTION ENHANCEMENT;
ANTENNA DIMENSIONS;
ANTENNA ELEMENT;
CATALYTIC METAL PARTICLES;
EFFICIENT COUPLING;
EFFICIENT POWER;
ELECTRON HOLE PAIRS;
HETEROMETALLICS;
INTER-BAND TRANSITION;
LOCALIZED SURFACE PLASMON;
LOCALIZED SURFACE PLASMON RESONANCE;
METALLIC ELEMENTS;
NANOANTENNAS;
NANODISKS;
NANOPARTICLE SURFACE;
NONRADIATIVE DECAYS;
NOVEL ROUTE;
PD PARTICLE;
PLASMONIC;
STRONG COUPLING;
WIDE SPECTRAL RANGE;
WIDELY TUNABLE;
ANTENNAS;
CHEMICAL BONDS;
ENERGY TRANSFER;
GOLD;
LIGHT ABSORPTION;
METALLIC COMPOUNDS;
PHOTONS;
PLASMONS;
SILVER;
SURFACE PLASMON RESONANCE;
PALLADIUM;
GOLD;
METAL NANOPARTICLE;
PALLADIUM;
SILICON DIOXIDE;
ABSORPTION;
ARTICLE;
CHEMISTRY;
CRYSTALLIZATION;
LIGHT;
MATERIALS TESTING;
METHODOLOGY;
PARTICLE SIZE;
RADIATION SCATTERING;
SURFACE PLASMON RESONANCE;
ULTRASTRUCTURE;
ABSORPTION;
CRYSTALLIZATION;
GOLD;
LIGHT;
MATERIALS TESTING;
METAL NANOPARTICLES;
PALLADIUM;
PARTICLE SIZE;
SCATTERING, RADIATION;
SILICON DIOXIDE;
SURFACE PLASMON RESONANCE;
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EID: 84866334816
PISSN: 15306984
EISSN: 15306992
Source Type: Journal
DOI: 10.1021/nl3022187 Document Type: Article |
Times cited : (48)
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References (30)
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