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首页> 外文期刊>Chemical engineering journal >MOF derived Ni-Co-S nanosheets on electrochemically activated carbon cloth via an etching/ion exchange method for wearable hybrid supercapacitors
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MOF derived Ni-Co-S nanosheets on electrochemically activated carbon cloth via an etching/ion exchange method for wearable hybrid supercapacitors

机译:MOF通过可穿戴式杂交超级电容器的蚀刻/离子交换方法衍生在电化学活化的碳布上的Ni-Co-S纳米片

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摘要

Flexible electrodes with favorable architectures are urgently demanded for flexible and wearable supercapacitors with high performance. Herein, we demonstrate the rational design and preparation of hollow and ultrathin nickel cobalt sulfides nanosheets arrays on electrochemical activated carbon cloth (Ni-Co-S/ACC) for fabrication of flexible hybrid supercapacitors, where the Ni-Co-S nanosheets are derived from the metal-organic framework via an etching/ion exchange method. The Ni-Co-S/ACC electrode can deliver a very high specific capacitance of 2392 F/g at the current density of 1 A/g and good rate performance (80.3% capacitance retention at 20 A/g). The enhanced electrochemical properties should be attributed to the hydrophilic property, good conductivity and enriched redox active sites resulted from the electrochemical activated carbon cloth and the hollow and ultrathin structure of Ni-Co-S nanosheets. When a flexible hybrid supercapacitor is assembled using Ni-Co-S/ACC as positive electrode and activated carbon as negative electrode, it shows high energy density of 30.1 Wh/Kg at power density of 800.2 W/Kg as well as predominant cycling stability (82% retention after 10,000 cycles). Furthermore, the excellent flexibility and wearability of the hybrid supercapacitor could envision promising applications in high-performance wearable energy storage devices.
机译:柔性电极具有良好的架构,迫切需要具有高性能的柔性和可穿戴的超级电路。在此,我们展示了在电化学活性炭布(Ni-Co-S / Acc)上的中空和超薄镍钴硫化物阵列的理性设计和制备,用于制备柔性杂交超级电容器,其中Ni-Co-S纳米蛋白酶源自通过蚀刻/离子交换方法的金属有机框架。 Ni-Co-S / ACC电极可以以1 A / g的电流密度提供2392 f / g的非常高的电容,并且良好的速率性能(80.3%的电容保留为20 a / g)。增强的电化学性质应归因于亲水性,良好的导电性和富含氧化还原活性位点由电化学活性炭布和Ni-Co-S纳米蛋白酶的中空和超薄结构引起的。当使用Ni-Co-S / ACC组装柔性混合超级电容器作为正极和活性炭作为负电极时,它显示出800.2W / kg的功率密度的30.1ph / kg的高能量密度以及主要的循环稳定性( 10,000个循环后的82%保留)。此外,混合超级电容器的优异柔韧性和耐磨性可以设想在高性能可穿戴能量存储装置中的有希望的应用。

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