首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >High-performance asymmetric supercapacitors with lithium intercalation reaction using metal oxide-based composites as electrode materials
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High-performance asymmetric supercapacitors with lithium intercalation reaction using metal oxide-based composites as electrode materials

机译:使用金属氧化物基复合材料作为电极材料的,具有锂嵌入反应的高性能不对称超级电容器

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摘要

FeOOH-graphene nanosheets (GNS)-carbon nanotubes (CNTs) hybrid material was synthesized by the direct hydrolysis of Fe~(3+) on the surface of GNS-supported and CNTs-bridged frameworks. Interestingly, the as-obtained nanocomposite (FeOOH/GNS/CNTs) shows the lithium intercalation reaction characteristic in 1 M Li2SO4 aqueous solution as an electrode material for supercapacitor, providing high electrochemical performances. More importantly, benefiting from the nanosized FeOOH and highly coupled with conductive CNTs-GNS networks, which is beneficial to electron and electrolyte ion transport in the overall electrode, the as-fabricated asymmetric supercapacitor, using FeOOH/GNS/CNTs and MnO2/GNS as the negative electrode and positive electrode, respectively, exhibits superior energy density (30.4 W h kg~(-1)) and good rate capability as well as excellent cycling stability (89% capacitance retention after 1000 cycles).
机译:FeOOH-石墨烯纳米片(GNS)-碳纳米管(CNTs)杂化材料是通过将Fe〜(3+)直接水解在GNS支撑和CNTs桥连骨架的表面上而合成的。有趣的是,如此获得的纳米复合材料(FeOOH / GNS / CNTs)在1 M Li2SO4水溶液中作为超级电容器的电极材料表现出锂嵌入反应的特性,具有很高的电化学性能。更重要的是,得益于纳米级的FeOOH,并与导电的CNTs-GNS网络高度耦合,这有利于整个电极中的电子和电解质离子传输。负极和正极分别具有优异的能量密度(30.4 W h kg〜(-1))和良好的倍率性能以及出色的循环稳定性(1000次循环后电容保持率89%)。

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