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用于电催化的三维石墨烯基宏观结构

Three-Dimensional Graphene-Based Macrostructures for Electrocatalysis.

作者信息

Cui Huijuan, Guo Yibo, Zhou Zhen

机构信息

School of Materials Science and Engineering, Institute of New Energy Material Chemistry, Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), Nankai University, Tianjin, 300350, P. R. China.

Engineering Research Center of Advanced Functional Material Manufacturing of Ministry of Education, School of Chemical Engineering, Zhengzhou University, Zhengzhou, 450001, P. R. China.

出版信息

Small. 2021 Jun;17(22):e2005255. doi: 10.1002/smll.202005255. Epub 2021 Mar 18.

Abstract

Electrochemical energy storage and conversion is an effective strategy to relieve the increasing energy and environment crisis. The sluggish reaction kinetics in the related devices is one of the major obstacles for them to realize practical applications. More efforts should be devoted to searching for high-efficiency electrocatalysts and enhancing the electrocatalytic performance. 3D graphene macrostructures (3D GMs) are one kind of porous crystalline materials with 3D structures at both micro- and macro-scale. The unique structure can achieve large accessible surface area, expose many active sites, promote fast mass/electron transport, and provide wide room for further functional modification. All these features make them promising candidates for electrocatalysis. In this review, the authors focus on the latest progress of 3D GMs for electrocatalysis. First, the preparation methods of 3D GMs are introduced followed by the strategies for functional modifications. Then, their electrocatalytic performances are discussed in detail including monofunctional and bifunctional electrocatalysis. The electrocatalytic processes involve oxygen reduction reaction, oxygen evolution reaction, hydrogen evolution reaction, and carbon dioxide reduction reaction. Finally, the challenges and perspectives are presented to offer a guideline for the exploration of excellent 3D GM-based electrocatalysts.

摘要

电化学能量存储与转换是缓解日益严重的能源和环境危机的有效策略。相关器件中缓慢的反应动力学是其实现实际应用的主要障碍之一。应投入更多努力来寻找高效的电催化剂并提高电催化性能。三维石墨烯宏观结构(3D GMs)是一种在微观和宏观尺度上均具有三维结构的多孔晶体材料。这种独特的结构能够实现较大的可及表面积,暴露出许多活性位点,促进快速的质量/电子传输,并为进一步的功能修饰提供广阔空间。所有这些特性使其成为电催化领域有潜力的候选材料。在这篇综述中,作者聚焦于三维石墨烯宏观结构在电催化方面的最新进展。首先介绍了三维石墨烯宏观结构的制备方法,随后阐述了功能修饰策略。接着详细讨论了它们的电催化性能,包括单功能和双功能电催化。电催化过程涉及氧还原反应、析氧反应、析氢反应和二氧化碳还原反应。最后,提出了挑战和展望,为探索基于三维石墨烯宏观结构的优异电催化剂提供指导。

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