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一种用于高性能固态非对称超级电容器的三维自支撑珊瑚状 CuCoS@NiCoS 核壳纳米结构复合材料。

A 3D self-supported coralline-like CuCoS@NiCoS core-shell nanostructure composite for high-performance solid-state asymmetrical supercapacitors.

机构信息

Key Laboratory of Artificial Micro- and Nano-structures of Ministry of Education of China, School of Physics and Technology, Wuhan University, Wuhan, 430072, People's Republic of China.

出版信息

Nanotechnology. 2019 Jun 21;30(25):255603. doi: 10.1088/1361-6528/ab08fb. Epub 2019 Feb 21.

DOI:10.1088/1361-6528/ab08fb
PMID:30790773
Abstract

Rational construction of three dimensional (3D) composite structure is an important method to flexible supercapacitor electrodes and has been extensively developed. In this work, a 3D self-supported CuCoS@NiCoS core-shell nanostructure grown on Nickel (Ni) foam, constructed by a hydrothermal method, was used as a novel supercapacitor electrode material. The unique structure possesses a large, specific surface area, rapid diffusion of electrolyte ions by numerous channels and avoids the use of additives and adhesives. The high electrical conductivity of the CuCoS nanoneedle arrays can speed up electronic transmission. At a current density of 1 A g, the electrode material exhibits a high specific capacity of 539.2 C g and cycling stability with 100% capacity retention after 5000 cycles in 3 M KOH. Furthermore, when the obtained CuCoS@NiCoS was used as the positive electrode and an activated carbon was used as the negative electrode, a solid-state asymmetric supercapacitor was assembled. More importantly, the obtained solid-state asymmetric supercapacitor demonstrated excellent electrochemical performance. When the power density was 400 W kg, it delivered a high density of 23.4 W h kg with a high voltage window of 1.6 V, thus demonstrating that the material has the potential for use as an efficient electrode for electrochemical capacitors. Due to its comprehensive electrochemical performance, the CuCoS@NiCoS solid-state asymmetric supercapacitor effectively operated a red LED.

摘要

合理构建三维(3D)复合结构是柔性超级电容器电极的重要方法,并得到了广泛的发展。在这项工作中,通过水热法在泡沫镍上生长的 3D 自支撑 CuCoS@NiCoS 核壳纳米结构被用作新型超级电容器电极材料。独特的结构具有大的比表面积、电解质离子通过众多通道的快速扩散,并避免使用添加剂和粘合剂。CuCoS 纳米针阵列的高导电性可以加速电子传输。在 1 A g 的电流密度下,电极材料表现出 539.2 C g 的高比容量和在 3 M KOH 中 5000 次循环后 100%容量保持率的循环稳定性。此外,当获得的 CuCoS@NiCoS 用作正极,活性炭用作负极时,组装了一个固态不对称超级电容器。更重要的是,所获得的固态不对称超级电容器表现出优异的电化学性能。当功率密度为 400 W kg 时,它以 1.6 V 的高电压窗口提供了 23.4 W h kg 的高能量密度,从而表明该材料具有作为电化学电容器的高效电极的潜力。由于其综合电化学性能,CuCoS@NiCoS 固态不对称超级电容器有效地驱动了一个红色 LED。

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