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Activation of Water-Splitting Photocatalysts by Loading with Ultrafine Rh-Cr Mixed-Oxide Cocatalyst Nanoparticles.


ABSTRACT: The activity of many water-splitting photocatalysts could be improved by the use of RhIII -CrIII mixed oxide (Rh2-x Crx O3 ) particles as cocatalysts. Although further improvement of water-splitting activity could be achieved if the size of the Rh2-x Crx O3 particles was decreased further, it is difficult to load ultrafine (<2?nm) Rh2-x Crx O3 particles onto a photocatalyst by using conventional loading methods. In this study, a new loading method was successfully established and was used to load Rh2-x Crx O3 particles with a size of approximately 1.3?nm and a narrow size distribution onto a BaLa4 Ti4 O15 photocatalyst. The obtained photocatalyst exhibited an apparent quantum yield of 16?%, which is the highest achieved for BaLa4 Ti4 O15 to date. Thus, the developed loading technique of Rh2-x Crx O3 particles is extremely effective at improving the activity of the water-splitting photocatalyst BaLa4 Ti4 O15 . This method is expected to be extended to other advanced water-splitting photocatalysts to achieve higher quantum yields.

SUBMITTER: Kurashige W 

PROVIDER: S-EPMC7318701 | biostudies-literature | 2020 Apr

REPOSITORIES: biostudies-literature

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Activation of Water-Splitting Photocatalysts by Loading with Ultrafine Rh-Cr Mixed-Oxide Cocatalyst Nanoparticles.

Kurashige Wataru W   Mori Yutaro Y   Ozaki Shuhei S   Kawachi Masanobu M   Hossain Sakiat S   Kawawaki Tokuhisa T   Shearer Cameron J CJ   Iwase Akihide A   Metha Gregory F GF   Yamazoe Seiji S   Kudo Akihiko A   Negishi Yuichi Y  

Angewandte Chemie (International ed. in English) 20200306 18


The activity of many water-splitting photocatalysts could be improved by the use of Rh<sup>III</sup> -Cr<sup>III</sup> mixed oxide (Rh<sub>2-x</sub> Cr<sub>x</sub> O<sub>3</sub> ) particles as cocatalysts. Although further improvement of water-splitting activity could be achieved if the size of the Rh<sub>2-x</sub> Cr<sub>x</sub> O<sub>3</sub> particles was decreased further, it is difficult to load ultrafine (<2 nm) Rh<sub>2-x</sub> Cr<sub>x</sub> O<sub>3</sub> particles onto a photocatalyst by  ...[more]

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