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Graphene and its Hybrids for Photocatalysis | Bentham Science

机译:石墨烯及其光催化杂化物|边沁科学

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Background: Photocatalysis shows great importance for conversion of solar energy tochemical energy, which represents a promising technology to solve the global energy and many pollutionproblems.Objective: The emerging graphene serves as an excellent building block with desirable functionalitiesfor use in photocatalysis.Strategy: Engineering towards graphene hybrids for photocatalysis offers exceptional charge mobility,and elongated lifespan for photogenerated carriers to diminish electron/hole pair recombination.Review: This paper literally reviews the development of graphene and its hybrids for application inmany photocatalytic processes including H2 evolution reaction, O2 evolution reaction, CO2 reductionreactions, chemical synthesis, and pollutant decomposition. Strategies for enhancing the propertiesfor photocatalysis are also shortly discussed. Finally, we provide an outlook on future trends and perspectivesfor graphene application in photocatalysis.
机译:背景:光催化对于将太阳能转化为化学能非常重要,这是解决全球能源和许多污染问题的一项有前途的技术目标:新兴的石墨烯是一种出色的构建基块,具有理想的功能,可用于光催化策略:朝着工程化方向发展用于光催化的石墨烯杂化物具有出色的电荷迁移率,并延长了光生载流子的寿命,从而减少了电子/空穴对的复合。综述:本文从字面上回顾了石墨烯及其杂化物在许多光催化过程中的应用,包括H2析出反应,O2析出反应, CO2还原反应,化学合成和污染物分解。简短地讨论了增强光催化性能的策略。最后,我们对石墨烯在光催化中的未来发展趋势和前景进行了展望。

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