Journal of Alloys and Compounds2022,Vol.9019.DOI:10.1016/j.jallcom.2022.163709

Fabrication of novel noble-metal-free ZnIn2S4/WC Schottky junction heterojunction photocatalyst: Efficient charge separation, increased active sites and low hydrogen production overpotential for boosting visible-light H2 evolution

Li X. Dong M. Gao Y. Wang T. Zhou H. Li Y. Ren C. Li H. Ma X. Li W.
Journal of Alloys and Compounds2022,Vol.9019.DOI:10.1016/j.jallcom.2022.163709

Fabrication of novel noble-metal-free ZnIn2S4/WC Schottky junction heterojunction photocatalyst: Efficient charge separation, increased active sites and low hydrogen production overpotential for boosting visible-light H2 evolution

Li X. 1Dong M. 1Gao Y. 1Wang T. 1Zhou H. 1Li Y. 1Ren C. 2Li H. 3Ma X. 1Li W.1
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作者信息

  • 1. Beijing Key Laboratory for Science and Application of Functional Molecular and Crystalline Materials University of Science and Technology Beijing
  • 2. Beijing Aerospace Propulsion Institute
  • 3. Center for Materials Science and Engineering Guangxi University of Science and Technology
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Abstract

Herein, we report the synthesis of ZnIn2S4 nanoparticles on bulk WC by a facile hydrothermal process to construct novel and highly efficient noble metal-free Schottky junction heterojunction photocatalysts. Morphology characterization revealed that the ZnIn2S4 nanoparticles were deposited on the surface of the WC. Meanwhile, the combination of the ZnIn2S4 and the metal-like WC formed the Schottky energy barrier, which greatly promoted the migration and separation of photo-generated carriers. Especially, the optimal ZnIn2S4/WC photocatalysts have a lower overpotential for hydrogen evolution (?0.35 V) than pristine ZnIn2S4 (?0.49 V). The hydrogen production ability of the optimal ZnIn2S4/WC photocatalyst (2400.3 μmol·h?1·g?1) was approximately 9.2 times higher than that of ZnIn2S4-1% Pt (260.1 μmol·h?1·g?1). Photocatalytic experiments demonstrated that metal-like WC plays an important role in replacing precious metal to increase the active site of ZnIn2S4. Moreover, a feasible Schottky junction reaction mechanism of intensive photocatalytic activity was discussed. This study proves that it is a very fascinating strategy to combine the advantages of ZnIn2S4 and metal-like to construct Schottky heterojunction for photocatalytic hydrogen production.

Key words

Hydrogen production overpotential/Noble metal-free/Photocatalytic hydrogen production/Schottky junction heterojunction/ZnIn2S4/WC

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出版年

2022
Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
被引量50
参考文献量67
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