Publication | Open Access
Collective excitation of plasmonic hot-spots for enhanced hot charge carrier transfer in metal/semiconductor contacts
24
Citations
37
References
2015
Year
EngineeringPlasmonic Hot-spotsChemistryCharge TransportMetal/semiconductor ContactsMethylene BluePhotocatalysisCharge Carrier TransportPlasmonic MaterialPhysicsNanotechnologyCollective ExcitationVisible Light IlluminationPlasmonicsPlasmonic CatalysisNanomaterialsNatural SciencesAluminium NanoparticlesApplied Physics
We show how a combination of near- and far-field coupling of the localised surface plasmon resonances in aluminium nanoparticles deposited on TiO2 films greatly enhances the visible light photocatalytic activity of the semiconductor material. We demonstrate two orders of magnitude enhancement in the rate of decomposition of methylene blue under visible light illumination when the surface of TiO2 films is decorated with gratings of Al nanoparticle dimers.
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