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New Energy Storage Option: Toward ZnCo2O4 Nanorods/Nickel Foam Architectures for High-Performance Supercapacitors

机译:新的储能选项:面向高性能超级电容器的ZnCo2O4纳米棒/镍泡沫体系结构

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摘要

Hierarchical ZnCo2O4ickel foam architectures were first fabricated from a simple scalable solution approach, exhibiting outstanding electrochemical performance in supercapacitors with high specific capacitance (~1400 F g~(-1) at I A g~(-1)), excellent rate capability (72.5% capacity retention at 20 A g~(-1)), and good cycling stability (only 3% loss after 1000 cycles at 6 A g~(-1)). All-solid-state supercapacitors were also fabricated by assembling two pieces of the ZnCo2O4-based electrodes, showing superior performance in terms of high specific capacitance and long cycling stability. Our work confirms that the as-prepared architectures can ndt only be applied in high energy density fields, but also be used in high power density applications, such as electric vehicles, flexible electronics, and energy storage devices.
机译:分层ZnCo2O4 /镍泡沫体系结构首先是通过简单的可扩展解决方案方法制造的,在具有高比电容(IA g〜(-1)为〜1400 F g〜(-1)),优异的倍率能力( 20 A g〜(-1)时的容量保持率为72.5%,并且具有良好的循环稳定性(6 A g〜(-1)时1000次循环仅损失3%)。全固态超级电容器还通过组装两块ZnCo2O4基电极而制成,在高比电容和长循环稳定性方面表现出卓越的性能。我们的工作证实,所准备的体系结构不仅可以应用于高能量密度领域,而且还可以用于高功率密度应用,例如电动汽车,柔性电子产品和储能设备。

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