4.8 Review

Recent Progress in the Synthesis and Applications of Composite Photocatalysts: A Critical Review

期刊

SMALL METHODS
卷 6, 期 2, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smtd.202101395

关键词

CO2 conversion; composite materials; H-2 evolution; photocatalysis; pollutant oxidation

资金

  1. Ministry of Science and Technology of China [2018YFA0702100]
  2. National Natural Science Foundation of China [11874169, 51972129]
  3. National Key R&D Program of China [2017YFE0120500]
  4. Key Research and Development Program of Hubei [2020BAB079]
  5. South Xinjiang Innovation and Development Program of Key Industries of Xinjiang Production and Construction Corps [2020DB002]

向作者/读者索取更多资源

Photocatalysis is an advanced technique that converts solar energy into sustainable fuels and oxidizes pollutants with semiconductor photocatalysts. The challenges for effective photocatalysis include the stability and efficiency of semiconductor photocatalysts. Researchers are making progress in developing highly efficient and stable photocatalysts through the design of various semiconductor composite photocatalysts.
Photocatalysis is an advanced technique that transforms solar energy into sustainable fuels and oxidizes pollutants via the aid of semiconductor photocatalysts. The main scientific and technological challenges for effective photocatalysis are the stability, robustness, and efficiency of semiconductor photocatalysts. For practical applications, researchers are trying to develop highly efficient and stable photocatalysts. Since the literature is highly scattered, it is urgent to write a critical review that summarizes the state-of-the-art progress in the design of a variety of semiconductor composite photocatalysts for energy and environmental applications. Herein, a comprehensive review is presented that summarizes an overview, history, mechanism, advantages, and challenges of semiconductor photocatalysis. Further, the recent advancements in the design of heterostructure photocatalysts including alloy quantum dots based composites, carbon based composites including carbon nanotubes, carbon quantum dots, graphitic carbon nitride, and graphene, covalent-organic frameworks based composites, metal based composites including metal carbides, metal halide perovskites, metal nitrides, metal oxides, metal phosphides, and metal sulfides, metal-organic frameworks based composites, plasmonic materials based composites and single atom based composites for CO2 conversion, H-2 evolution, and pollutants oxidation are discussed elaborately. Finally, perspectives for further improvement in the design of composite materials for efficient photocatalysis are provided.

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