Applied Catalysis2022,Vol.30411.DOI:10.1016/j.apcatb.2021.120995

Fluorine-doped iron oxyhydroxide cocatalyst: promotion on the WO3 photoanode conducted photoelectrochemical water splitting

Li, Yan Mei, Qiong Liu, Zejun Hu, Xingsheng Zhou, Zhaohui Bai, Bo Liu, Hui Ding, Fei Wang, Qizhao Huang, Jingwei
Applied Catalysis2022,Vol.30411.DOI:10.1016/j.apcatb.2021.120995

Fluorine-doped iron oxyhydroxide cocatalyst: promotion on the WO3 photoanode conducted photoelectrochemical water splitting

Li, Yan 1Mei, Qiong 1Liu, Zejun 1Hu, Xingsheng 2Zhou, Zhaohui 1Bai, Bo 1Liu, Hui 3Ding, Fei 1Wang, Qizhao 1Huang, Jingwei2
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作者信息

  • 1. Changan Univ
  • 2. Northwest Normal Univ
  • 3. Cent South Univ
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Abstract

WO3 as a photoanode has the disadvantage of poor charge separation and low solar utilization. It is necessary to surmount these weaknesses to improve its performance. In this work, we doped FeOOH with F to prepare F: FeOOH/BiVO4/WO3 photoanode by the facile method. According to the photoelectrochemical evaluation, in the phosphate buffer electrolyte, the maximum photocurrent of the composite photoanode (3.1 mA/cm(2)) is 7 times and 9 times that of WO3 and BiVO4, respectively. The improvement is ascribable to F:FeOOH can extract holes and improve charge transfer. Compared with BiVO4/WO3 and original components, F:FeOOH/BiVO4/WO3 photoanode enhances charge separation and also shows good stability and electrons lifetime. Additionally, F -doped FeOOH has better OER catalytic performance than FeOOH according to theoretical calculation, which is consistent with experimental results. This work might extend application of cocatalyst in decomposition PEC water splitting.

Key words

BiVO4/Photoelectrochemical water splitting/Fluorine doped FeOOH/WO3/EFFICIENT WATER/HETEROJUNCTION/FABRICATION/FILM

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出版年

2022
Applied Catalysis

Applied Catalysis

ISSN:0926-3373
被引量56
参考文献量51
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