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用于无粘合剂超级电容器的3D石墨烯纳米材料:提高性能的科学设计

3D graphene nanomaterials for binder-free supercapacitors: scientific design for enhanced performance.

作者信息

He Shuijian, Chen Wei

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin 130022, China.

出版信息

Nanoscale. 2015 Apr 28;7(16):6957-90. doi: 10.1039/c4nr05895j.

Abstract

Because of the excellent intrinsic properties, especially the strong mechanical strength, extraordinarily high surface area and extremely high conductivity, graphene is deemed as a versatile building block for fabricating functional materials for energy production and storage applications. In this article, the recent progress in the assembly of binder-free and self-standing graphene-based materials, as well as their application in supercapacitors are reviewed, including electrical double layer capacitors, pseudocapacitors, and asymmetric supercapacitors. Various fabrication strategies and the influence of structures on the capacitance performance of 3D graphene-based materials are discussed. We finally give concluding remarks and an outlook on the scientific design of binder-free and self-standing graphene materials for achieving better capacitance performance.

摘要

由于石墨烯具有优异的固有特性,特别是强大的机械强度、极高的表面积和极高的导电性,它被视为用于制造能源生产和存储应用功能材料的通用构建单元。本文综述了无粘结剂自立式石墨烯基材料组装的最新进展及其在超级电容器中的应用,包括双电层电容器、赝电容器和不对称超级电容器。讨论了各种制备策略以及结构对三维石墨烯基材料电容性能的影响。最后,我们对无粘结剂自立式石墨烯材料的科学设计进行总结并展望,以实现更好的电容性能。

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