Publication | Open Access
Photoluminescence Revealed Higher Order Plasmonic Resonance Modes and Their Unexpected Frequency Blue Shifts in Silver-Coated Silica Nanoparticle Antennas
10
Citations
21
References
2019
Year
Materials SciencePlasmonicsElectromagnetic MetamaterialsSilver ShellsEngineeringPhysicsNanomaterialsOptical PropertiesNanotechnologyPlasmonic CatalysisApplied PhysicsPlasmonic ShellsResonance FrequenciesPlasmonic Material
Higher order plasmonic resonance modes and their frequency blue shifts in silver-coated silica nanoparticle antennas are studied. Synthesizing them with a wet chemistry method, silica (SiO2) nanoparticles were enclosed within silver shells with different thicknesses. A size-dependent Drude model was used to model the plasmonic shells and their optical losses. Two higher order plasmonic resonances were identified for each case in these simulations. The photoluminescence spectroscopy (PL) experimental results, in good agreement with their simulated values, confirmed the presence of those two higher order resonant modes and their resonance frequencies. When compared with pure metallic Ag nanoparticles, size-induced blue shifts were observed in these resonance frequencies.
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