首页> 中文期刊> 《纳微快报:英文版》 >Nanostructured Ternary Metal Tungstate-Based Photocatalysts for Environmental Purification and Solar Water Splitting:A Review

Nanostructured Ternary Metal Tungstate-Based Photocatalysts for Environmental Purification and Solar Water Splitting:A Review

         

摘要

Visible-light-responsive ternary metal tungstate(MWO4) photocatalysts are being increasingly investigated for energy conversion and environmental purification applications owing to their striking features, including low cost,eco-friendliness, and high stability under acidic and oxidative conditions. However, rapid recombination of photoinduced electron–hole pairs and a narrow light response range to the solar spectrum lead to low photocatalytic activity of MWO4-based materials, thus significantly hampering their wide usage in practice. To enable their widespread practical usage, significant efforts have been devoted, by developing new concepts and innovative strategies. In this review, we aim to provide an integrated overview of the fundamentals and recent progress of MWO4-based photocatalysts. Furthermore, different strategies, including morphological control, surface modification, heteroatom doping, and heterojunction fabrication, which are employed to promote the photocatalyticactivities of MWO4-based materials, are systematically summarized and discussed. Finally, existing challenges and a future perspective are also provided to shed light on the development of highly efficient MWO4-based photocatalysts.

著录项

  • 来源
    《纳微快报:英文版》 |2018年第4期|P.201-227|共27页
  • 作者单位

    School of Chemistry and Environmental Engineering;

    Wuhan Institute of Technology;

    Key Laboratory of Biomass Chemical Engineering of Ministry of Education;

    College of Chemical and Biological Engineering;

    Zhejiang University;

    Department of Environmental Science and Engineering;

    North China Electric Power University;

    School of Chemistry and Environmental Engineering;

    Wuhan Institute of Technology;

    Key Laboratory of Biomass Chemical Engineering of Ministry of Education;

    College of Chemical and Biological Engineering;

    Zhejiang University;

    Department of Environmental Science and Engineering;

    North China Electric Power University;

    School of Chemistry and Environmental Engineering;

    Wuhan Institute of Technology;

    Key Laboratory of Biomass Chemical Engineering of Ministry of Education;

    College of Chemical and Biological Engineering;

    Zhejiang University;

    Department of Environmental Science and Engineering;

    North China Electric Power University;

    School of Chemistry and Environmental Engineering;

    Wuhan Institute of Technology;

    Key Laboratory of Biomass Chemical Engineering of Ministry of Education;

    College of Chemical and Biological Engineering;

    Zhejiang University;

    Department of Environmental Science and Engineering;

    North China Electric Power University;

    School of Chemistry and Environmental Engineering;

    Wuhan Institute of Technology;

    Key Laboratory of Biomass Chemical Engineering of Ministry of Education;

    College of Chemical and Biological Engineering;

    Zhejiang University;

    Department of Environmental Science and Engineering;

    North China Electric Power University;

    School of Chemistry and Environmental Engineering;

    Wuhan Institute of Technology;

    Key Laboratory of Biomass Chemical Engineering of Ministry of Education;

    College of Chemical and Biological Engineering;

    Zhejiang University;

    Department of Environmental Science and Engineering;

    North China Electric Power University;

    School of Chemistry and Environmental Engineering;

    Wuhan Institute of Technology;

    Key Laboratory of Biomass Chemical Engineering of Ministry of Education;

    College of Chemical and Biological Engineering;

    Zhejiang University;

    Department of Environmental Science and Engineering;

    North China Electric Power University;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 催化剂;
  • 关键词

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