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碳纤维纸支撑的氧化钴纳米网的分层网络结构用于高容量赝电容器。

Hierarchical network architectures of carbon fiber paper supported cobalt oxide nanonet for high-capacity pseudocapacitors.

机构信息

School of Materials Science and Engineering, Georgia Institute of Technology, 771 Ferst Drive, Atlanta, Georgia 30332-0245, USA.

出版信息

Nano Lett. 2012 Jan 11;12(1):321-5. doi: 10.1021/nl203600x. Epub 2011 Dec 22.

Abstract

We present a high-capacity pseudocapacitor based on a hierarchical network architecture consisting of Co(3)O(4) nanowire network (nanonet) coated on a carbon fiber paper. With this tailored architecture, the electrode shows ideal capacitive behavior (rectangular shape of cyclic voltammograms) and large specific capacitance (1124 F/g) at high charge/discharge rate (25.34 A/g), still retaining ~94% of the capacitance at a much lower rate of 0.25 A/g. The much-improved capacity, rate capability, and cycling stability may be attributed to the unique hierarchical network structures, which improves electron/ion transport, enhances the kinetics of redox reactions, and facilitates facile stress relaxation during cycling.

摘要

我们提出了一种基于分层网络结构的高容量赝电容器,该结构由涂覆在碳纤维纸上的 Co(3)O(4)纳米线网络(nanonet)组成。通过这种定制的架构,电极表现出理想的电容行为(循环伏安图的矩形形状)和高充放电速率(25.34 A/g)下的大比电容(1124 F/g),在低得多的速率 0.25 A/g 下仍保留约 94%的电容。容量、倍率性能和循环稳定性的大幅提高可能归因于独特的分层网络结构,这改善了电子/离子传输,增强了氧化还原反应的动力学,并在循环过程中促进了易于松弛的应力。

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