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首页> 外文期刊>Nanoscale >Enhancing electrochemical reaction sites in nickel-cobalt layered double hydroxides on zinc tin oxide nanowires: a hybrid material for an asymmetric supercapacitor device
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Enhancing electrochemical reaction sites in nickel-cobalt layered double hydroxides on zinc tin oxide nanowires: a hybrid material for an asymmetric supercapacitor device

机译:加强电化学反应网站在锌镍钴水滑石氧化锡纳米线:一个混合的材料非对称超级电容器设备

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摘要

Conducting nanowires are of particular interest in energy-related research on devices such as supercapacitors, batteries, water splitting electrodes and solar cells. Their direct electrode/current collector contact and highly conductive ID structure enable conducting nanowires to provide ultrafast charge transportation. In this paper, we report the facile synthesis of nickel cobalt layered double hydroxides (LDHs) on conducting Zn2SnO4 (ZTO) and the application of this material to a supercapacitor. This study also presents the first report of an enhancement of the active faradic reaction sites (electroactive sites) resulting from the heterostructure. This novel material demonstrates outstanding electrochemical performance with a high specific capacitance of 1805 F g~(-1) at 0.5 A g~(-1), and an excellent rate performance of 1275 F g~(-1) can be achieved at 100 A g~(-1). Furthermore, an asymmetric supercapacitor was successfully fabricated using active carbon as a negative electrode. This asymmetric device exhibits a high energy density of 23.7 W h kg~(-1) at a power density of 284.2 W kg~(-1). Meanwhile, a high power density of 5817.2 W kg~(-1) can be achieved at an energy density of 9.7 W h kg~(-1). More importantly, this device exhibits long-term cycling stability, with 92.7% capacity retention after 5000 cycles.
机译:导电纳米线特别感兴趣能源研究等设备超级电容器、电池、水分裂电极和太阳能电池。电极/电流收集器和高度接触导电ID使导电结构纳米线提供超快的交通工具。简单的合成镍钴层状双氢氧化物(类)进行Zn2SnO4 (ZTO)和这种材料的应用超级电容器。第一次报告的改进活动感应电流的反应网站(电活性网站)导致的异质结构。材料展示优秀的电化学性能高的比电容1805 F (g ~(1)为0.5 g ~(1),和一个优秀的率1275 F (g ~(1)的性能在100 g ~(1)。超级电容器是成功地组合使用活性炭作为负电极。不对称装置展品高的能量密度23.7 W h公斤~(1)功率密度为284.2 W公斤~(1)。5817.2 W公斤~(1)可以实现在一个能量密度为9.7 W h公斤~(1)。这个设备展览长期循环稳定性,5000个周期后保留92.7%的能力。

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