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Scalable synthesis of BiVO4 thin films via anodic plating and thermal calcination.


ABSTRACT: Fabrication of high-quality semiconductor thin films has long been a subject of keen interest in the photocatalytic field. Here, we report a facile, solution-based anodic plating and calcination for large-scale synthesis of BiVO4 thin films on indium tin oxide coated glass for use as photoanodes in solar water splitting. Using Na2SO3 as a sacrificial reagent, continuous solar H2 production with 94% Faradaic efficiency was obtained over 6 h of photoelectrochemical water splitting.

SUBMITTER: Jiang H 

PROVIDER: S-EPMC9908786 | biostudies-literature | 2023 Feb

REPOSITORIES: biostudies-literature

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Scalable synthesis of BiVO<sub>4</sub> thin films via anodic plating and thermal calcination.

Jiang Haoyang H   Xiao Yongcheng Y   Zhong Miao M  

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Fabrication of high-quality semiconductor thin films has long been a subject of keen interest in the photocatalytic field. Here, we report a facile, solution-based anodic plating and calcination for large-scale synthesis of BiVO<sub>4</sub> thin films on indium tin oxide coated glass for use as photoanodes in solar water splitting. Using Na<sub>2</sub>SO<sub>3</sub> as a sacrificial reagent, continuous solar H<sub>2</sub> production with 94% Faradaic efficiency was obtained over 6 h of photoelec  ...[more]

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