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首页> 外文期刊>Chemistry: A European journal >Polypyrrole Shell@3D-Ni Metal Core Structured Electrodes for High-Performance Supercapacitors
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Polypyrrole Shell@3D-Ni Metal Core Structured Electrodes for High-Performance Supercapacitors

机译:高性能超级电容器用聚吡咯壳@ 3D-Ni金属芯结构电极

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Three-dimensional (3D) nanometal films serving as current collectors have attracted much interest recently owing to their promising application in high-performance supercapacitors. In the process of the electrochemical reaction, the 3D structure can provide a short diffusion path for fast ion transport, and the highly conductive nanometal may serve as a backbone for facile electron transfer. In this work, a novel polypyrrole (PPy) shell@3D-Ni-core composite is developed to enhance the electrochemical performance of conventional PPy. With the introduction of a Ni metal core, the as-prepared material exhibits a high specific capacitance (726Fg(-1) at a charge/discharge rate of 1Ag(-1)), good rate capability (a decay of 33% in C-sp with charge/discharge rates increasing from 1 to 20Ag(-1)), and high cycle stability (only a small decrease of 4.2% in C-sp after 1000cycles at a scan rate of 100mVs(-1)). Furthermore, an aqueous symmetric supercapacitor device is fabricated by using the as-prepared composite as electrodes; the device demonstrates a high energy density (approximate to 21.2Whkg(-1)) and superior long-term cycle ability (only 4.4% and 18.6% loss in C-sp after 2000 and 5000cycles, respectively).
机译:由于其在高性能超级电容器中的应用前景广阔,因此用作集电器的三维(3D)纳米金属膜近来引起了人们的极大兴趣。在电化学反应过程中,3D结构可以为快速的离子传输提供较短的扩散路径,而高导电性的纳米金属可以充当便捷的电子转移的主链。在这项工作中,开发了一种新型的聚吡咯(PPy)壳@ 3D-Ni-核复合材料,以增强常规PPy的电化学性能。随着镍金属芯的引入,所制备的材料表现出高的比电容(在1Ag(-1)的充电/放电速率下为726Fg(-1)),良好的速率能力(在C中衰减33% -sp,充电/放电速率从1增加到20Ag(-1))和高循环稳定性(在100mVs(-1)的扫描速率下经过1000次循环后,C-sp仅小幅下降4.2%)。此外,使用所制备的复合材料作为电极来制造水对称超级电容器装置。该设备显示出高能量密度(约21.2Whkg(-1))和出色的长期循环能力(在2000和5000次循环后,C-sp仅损失4.4%和18.6%)。

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