Metal and metal oxide nanoparticles for photoelectrochemical materials and devices

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Abstract

We have developed three types of photoelectrochemical nanomaterials and devices based on metal and/or semiconducting metal oxide nanoparticles for effective use of light energy. Photocatalysts with oxidative energy storage abilities were developed by coupling a photocatalyst with a rechargeable metal oxide or metal hydroxide nanomaterial to address an issue that TiO2photocatalyst does not function after dark. Plasmonic metal nanoparticle ensembles were thermally and/or chemically stabilized by using a metal oxide nanomask or ultrathin metal oxide coating and applied to localized surface plasmon resonance sensors and photovoltaic cells based on the plasmoninduced charge separation. Organic and organic-inorganic hybrid photoelectrodes were also developed to give photocurrents enhanced by optimally arranged plasmonic metal nanoantennas.

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Takahashi, Y., Yamada, S., & Tatsuma, T. (2014). Metal and metal oxide nanoparticles for photoelectrochemical materials and devices. Electrochemistry, 82(9), 726–729. https://doi.org/10.5796/electrochemistry.82.726

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