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Solar water splitting over Rh0.5Cr1.5O3-loaded AgTaO3 of a valence-band-controlled metal oxide photocatalyst.


ABSTRACT: Improvement of water splitting performance of AgTaO3 (BG 3.4 eV) of a valence-band-controlled photocatalyst was examined. Survey of cocatalysts revealed that a Rh0.5Cr1.5O3 cocatalyst was much more effective than Cr2O3, RuO2, NiO and Pt for water splitting into H2 and O2 in a stoichiometric amount. The optimum loading amount of the Rh0.5Cr1.5O3 cocatalyst was 0.2 wt%. The apparent quantum yield (AQY) at 340 nm of the optimized Rh0.5Cr1.5O3(0.2 wt%)/AgTaO3 photocatalyst reached to about 40%. Rh0.5Cr1.5O3(0.2 wt%)/AgTaO3 gave a solar to hydrogen conversion efficiency (STH) of 0.13% for photocatalytic water splitting under simulated sunlight irradiation. Bubbles of gasses evolved by the solar water splitting were visually observed under atmospheric pressure at room temperature.

SUBMITTER: Watanabe K 

PROVIDER: S-EPMC7069506 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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Solar water splitting over Rh<sub>0.5</sub>Cr<sub>1.5</sub>O<sub>3</sub>-loaded AgTaO<sub>3</sub> of a valence-band-controlled metal oxide photocatalyst.

Watanabe Kenta K   Iwase Akihide A   Kudo Akihiko A  

Chemical science 20200128 9


Improvement of water splitting performance of AgTaO<sub>3</sub> (BG 3.4 eV) of a valence-band-controlled photocatalyst was examined. Survey of cocatalysts revealed that a Rh<sub>0.5</sub>Cr<sub>1.5</sub>O<sub>3</sub> cocatalyst was much more effective than Cr<sub>2</sub>O<sub>3</sub>, RuO<sub>2</sub>, NiO and Pt for water splitting into H<sub>2</sub> and O<sub>2</sub> in a stoichiometric amount. The optimum loading amount of the Rh<sub>0.5</sub>Cr<sub>1.5</sub>O<sub>3</sub> cocatalyst was 0.2 wt  ...[more]

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