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首页> 外文期刊>Journal of Energy Storage >In-situ growth of bimetallic sulfide NiCo_2S_4 nanowire on carbon cloth for asymmetric flexible supercapacitors
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In-situ growth of bimetallic sulfide NiCo_2S_4 nanowire on carbon cloth for asymmetric flexible supercapacitors

机译:用于不对称柔性超级电容器的碳布中双金属硫化物Nico_2S_4纳米线的原位生长

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摘要

Fully flexible, lightweight, and high-performance supercapacitor was designed, with in-situ grown NiCo2S4 nanowire on activated carbon cloth (CC) by a simple two-step hydrothermal method. Needle-like NiCo2S4 nanowire uniformly arranged on CC substrate, not only increases the sufficient contact area between the electrode and the electrolyte, but also favor rapid electron transfer. Benefitting from these advantages, this designed NiCo2S4@CC electrode expresses high area capacitance of 1568.8 mF cm(-2) at 1 mA cm(-2) and good capacitance retention with 9.9% capacitance lost after 10000 cycles. Moreover, a flexible asymmetric supercapacitor using NiCo2S4@CC as the anode and Fe2O3@CC as the cathode is assembled, which displays high specific capacitance (343.2 mF cm(-2)) at 1 mA cm(-2), energy density (93.43 mu Wh cm(-2)), and power density (700.7 mu W cm(-2)) with the capacitance retention of 81.8% at 20 mA cm(-2) after 5000 cycles, proving the feasibility for flexible wearable energy storage device.
机译:通过简单的两步水热法,设计了完全灵活,轻巧和高性能的超级电容器,在原位上有原位种植的碳布(CC)上的纳米线。针状Nico2S4纳米线均匀地布置在CC衬底上,不仅增加了电极和电解质之间的足够的接触面积,而且还支持快速的电子转移。从这些优点中受益,该设计的Nico2S4 @ CC电极在1mA cm(-2)时表示为1568.8mF cm(-2)的高面积电容,并且在10000次循环后损失的电容损失的良好电容保持率为9.9%。此外,组装使用NicO2S4 @ CC作为阴极作为阳极和Fe2O3 @ C​​C的柔性非对称超级电容器,其在1 mA cm(-2),能量密度(93.43)下显示出高比电容(343.2mF cm(-2))(93.43 MU WH cm(-2))和功率密度(700.7μm(-2))在5000次循环后,电容保持在20 mA cm(-2)下的电容保持81.8%,证明了灵活的可佩戴能量存储装置的可行性。

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