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设计用于高性能赝电容的 3D 互连通连续纳米多孔 Co/CoO 核壳纳米结构电极。

Designing 3D interconnected continuous nanoporous Co/CoO core-shell nanostructure electrodes for a high-performance pseudocapacitor.

机构信息

Institute of Nano-science and Technology, College of Physical Science and Technology, Central China Normal University, Wuhan, 430079, People's Republic of China.

出版信息

Nanotechnology. 2017 Feb 24;28(8):085401. doi: 10.1088/1361-6528/aa53be. Epub 2016 Dec 14.

Abstract

A high-performance supercapacitor electrode is designed and fabricated with the 3D interconnected continuous nanoporous Co/CoO core-shell hybrid nanostructure grown on nickel foam. The Co/CoO core-shell hybrid nanostructures are obtained via a hydrothermal method, followed by high-temperature annealing in hydrogen atmosphere, and finally placed in air at 50 °C for 1 h. The Co/CoO core-shell nanostructure assembled by a conductive metal-core and a CoO shell, brings low resistance, high specific capacitance of 5.632 F cm and good capability stability (81.5% capacitance retention after 6000 cycles). An asymmetric supercapacitor device built by the Co/CoO (positive electrode) and activated carbon (negative electrode) can deliver a working voltage of 1.7 V and display a high energy density of 0.002 67 Wh cm at a power density of 0.001 62 W cm, which is far superior to that of a supercapacitor at a similar power density.

摘要

设计并制备了一种高性能超级电容器电极,该电极采用三维互连连续纳米多孔 Co/CoO 核壳混合纳米结构,生长在泡沫镍上。Co/CoO 核壳混合纳米结构通过水热法获得,然后在氢气气氛中进行高温退火,最后在 50°C 的空气中放置 1 小时。由导电金属核和 CoO 壳组装的 Co/CoO 核壳纳米结构,具有低电阻、5.632 F cm 的高比电容和良好的电容稳定性(6000 次循环后电容保持率为 81.5%)。由 Co/CoO(正极)和活性炭(负极)构建的非对称超级电容器器件可提供 1.7 V 的工作电压,在 0.001 62 W cm 的功率密度下显示出 0.002 67 Wh cm 的高能量密度,远高于类似功率密度下的超级电容器。

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