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Photocatalytic Applications of Heterostructure Graphitic Carbon Nitride: Pollutant Degradation Hydrogen Gas Production (water splitting) and CO2 Reduction

机译:异质结构石墨氮化碳的光催化应用:污染物降解氢气产生(水分解)和CO2还原

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摘要

AbstractFabrication of the heterojunction composites photocatalyst has attained much attention for solar energy conversion due to their high optimization of reduction-oxidation potential as a result of effective separation of photogenerated electrons-holes pairs. In this review, the background of photocatalysis, mechanism of photocatalysis, and the several researches on the heterostructure graphitic carbon nitride (g-C3N4) semiconductor are discussed. The advantages of the heterostructure g-C3N4 over their precursors are also discussed. The conclusion and future perspectives on this emerging research direction are given. This paper gives a useful knowledge on the heterostructure g-C3N4 and their photocatalytic mechanisms and applications.
机译:摘要异质结复合光催化剂的制备由于有效分离光生电子-空穴对而具有很高的还原-氧化电势优化性能,因此备受太阳能领域的关注。本文综述了光催化的背景,光催化的机理以及异质结构石墨氮化碳(g-C3N4)半导体的若干研究。还讨论了异质结构g-C3N4相对于其前体的优势。给出了这一新兴研究方向的结论和未来展望。本文对异质结构g-C3N4及其光催化机理和应用提供了有用的知识。

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