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Design and engineering of graphene nanostructures as independent solar-driven photocatalysts for emerging applications in the field of energy and environment

机译:石墨烯纳米结构的设计和工程作为独立的太阳能驱动的催化剂新兴能源和领域的应用环境

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There is a growing interest in graphene-based solar-driven photocatalysis to resolve the energy and environmental issues because of their cost-effective synthesis and unique properties.Graphene and its derivatives have extensively been used as support for boosting the efficiency of wide band-gap semiconductor photocatalysts.However,recent studies show that these graphene-based nanomaterials can also serve as independent solar-driven photocatalysts to replace metal/metal-oxide-based solids for emerging applications.This paper deals with the importance of chemical doping in tailoring their optoelectronic/photocatalytic properties to make them excellent standalone metal-free photocatalysts.Heteroatom doping/co-doping induced structural and band-gap engineering of graphene/derivatives with an emphasis on the basic thermodynamic requirements for photocatalytic reactions have been discussed.Thereafter,applications of doped graphene nanomaterials as sole photocatalysts are described in the emerging field of energy and environment(i.e.,water splitting,pollutant degradation,and CO2 reduction),highlighting the latest development.Finally,various challenges in developing graphene-based sole photocatalysts and future perspectives are summarized.
机译:越来越多的石墨烯的兴趣解决能源的太阳能光催化因为他们和环境问题具有成本效益的合成和独特的属性。广泛的被用作支持提高宽的带隙半导体的效率论文的。这些石墨烯纳米材料也可以提供作为独立的太阳能驱动的催化剂取代金属/ metal-oxide-based固体新兴的应用程序。化学掺杂在裁剪的重要性光电/光催化性能他们优秀的独立不含金属的论文的。诱导结构和带隙工程石墨烯/衍生品与强调基本的热力学要求光催化反应是进行了讨论。石墨烯纳米材料作为唯一的催化剂在新兴的能源和描述环境(即。退化,以及减少二氧化碳),强调了最新的发展。唯一开发石墨烯催化剂未来的观点进行了总结。

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