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      S-Scheme Heterojunction Photocatalyst

      , , , ,
      Chem
      Elsevier BV

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          Heterogeneous photocatalyst materials for water splitting.

          This critical review shows the basis of photocatalytic water splitting and experimental points, and surveys heterogeneous photocatalyst materials for water splitting into H2 and O2, and H2 or O2 evolution from an aqueous solution containing a sacrificial reagent. Many oxides consisting of metal cations with d0 and d10 configurations, metal (oxy)sulfide and metal (oxy)nitride photocatalysts have been reported, especially during the latest decade. The fruitful photocatalyst library gives important information on factors affecting photocatalytic performances and design of new materials. Photocatalytic water splitting and H2 evolution using abundant compounds as electron donors are expected to contribute to construction of a clean and simple system for solar hydrogen production, and a solution of global energy and environmental issues in the future (361 references).
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            Heterojunction Photocatalysts.

            Semiconductor-based photocatalysis attracts wide attention because of its ability to directly utilize solar energy for production of solar fuels, such as hydrogen and hydrocarbon fuels and for degradation of various pollutants. However, the efficiency of photocatalytic reactions remains low due to the fast electron-hole recombination and low light utilization. Therefore, enormous efforts have been undertaken to solve these problems. Particularly, properly engineered heterojunction photocatalysts are shown to be able to possess higher photocatalytic activity because of spatial separation of photogenerated electron-hole pairs. Here, the basic principles of various heterojunction photocatalysts are systematically discussed. Recent efforts toward the development of heterojunction photocatalysts for various photocatalytic applications are also presented and appraised. Finally, a brief summary and perspectives on the challenges and future directions in the area of heterojunction photocatalysts are also provided.
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              Ultrathin 2D/2D WO3/g-C3N4 step-scheme H2-production photocatalyst

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                Author and article information

                Contributors
                Journal
                Chem
                Chem
                Elsevier BV
                24519294
                July 2020
                July 2020
                : 6
                : 7
                : 1543-1559
                Article
                10.1016/j.chempr.2020.06.010
                23e36ee0-0e36-4338-9b3b-c329b67c54d7
                © 2020

                https://www.elsevier.com/tdm/userlicense/1.0/

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