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Heteroatom doped graphene in photocatalysis: A review

机译:杂原子掺杂石墨烯在光催化中的研究进展

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Photocatalysis has been a focus of great attention due to its useful environmental applications such as eliminating hazardous pollutants and generating sustainable energy. Coincidentally, graphene, a 2D allotrope of carbon, has also infiltrated many research fields due to its outstanding properties - photocatalysis being no exception. As of recent, there has been growing research focus on heteroatom (O, N, B, P and S) doping of graphene and its emergent application opportunities. In this study, rather than the familiar graphene as the electron transfer medium that is normally integrated in a photocatalyst system, we contrarily explore the implication of heteroatom doped graphene and the underlying mechanism behind their advantageous uses in photocatalysis. This review surveys the literature and highlights recent progress and challenges in the development of chemically doped graphene in the photocatalysis scene. It is desired that this review will promote awareness and encourage further investigations for the development in this budding research area. (C) 2015 Elsevier B.V. All rights reserved.
机译:光催化由于其在环境中的有用应用(例如消除有害污染物和产生可持续能源)而成为人们高度关注的焦点。巧合的是,石墨烯(一种碳的2D同素异形体)由于其出色的性能也进入了许多研究领域-光催化也不例外。最近,人们对石墨烯的杂原子(O,N,B,P和S)掺杂及其新兴应用机会的研究越来越多。在这项研究中,我们不是探索通常集成在光催化剂体系中的石墨烯作为电子转移介质,相反地,我们探索了杂原子掺杂的石墨烯的含义及其在光催化中的有益用途背后的潜在机理。这篇综述调查了文献,并重点介绍了光催化领域中化学掺杂石墨烯发展的最新进展和挑战。希望这次审查将提高人们的认识,并鼓励对该发芽研究领域的发展进行进一步调查。 (C)2015 Elsevier B.V.保留所有权利。

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