4.8 Article

Rational Design of 3D Hierarchical Ternary SnO2/TiO2/BiVO4 Arrays Photoanode toward Efficient Photoelectrochemical Performance

期刊

ADVANCED SCIENCE
卷 7, 期 3, 页码 -

出版社

WILEY
DOI: 10.1002/advs.201902235

关键词

arrays; composites; hierarchical structure; photoanodes; photoelectrochemical water spitting

资金

  1. National Natural Science Foundation of China [51772213]
  2. Shanghai Science and Technology Committee [18ZR1442300, 18JC1410900]
  3. Fundamental Research Funds for the Central Universities

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BiVO4 as a promising semiconductor absorber is widely investigated as photoanode in photoelectrochemical water splitting. Herein, the rational design of 3D hierarchical ternary SnO2/TiO2/BiVO4 arrays is reported as photoanode for photoelectrochemical application, in which the SnO2 hierarchically hollow microspheres core/nanosheets shell arrays act as conductive skeletons, while the sandwiched TiO2 and surface BiVO4 are working as hole blocking layer and light absorber, respectively. Arising to the hierarchically ordered structure and synergistic effect between each component in the composite, the ternary SnO2/TiO2/BiVO4 photoanode enables high light harvesting efficiency as well as enhanced charge transport and separation efficiency, yielding a maximum photocurrent density of approximate to 5.03 mA cm(-2) for sulfite oxidation and approximate to 3.1 mA cm(-2) for water oxidation, respectively, measured at 1.23 V versus reversible hydrogen electrode under simulated air mass (AM) 1.5 solar light illumination. The results reveal that electrode design and interface engineering play important roles on the overall PEC performance.

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