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Design and construction of three-dimensional flower-like CuO hierarchical nanostructures on copper foam for high performance supercapacitor

机译:高性能超级电容器在泡沫铜上三维花状CuO分层纳米结构的设计与构建

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We have developed a simple and cost-effective one-step surface oxidation method to synthesize three-dimensional (3D) flower-like, similar to that of a blooming chrysanthemum, CuO hierarchical nanostructures directly on a copper foam, which is acting as the Cu source and the current collector. The as-prepared sample can be directly used as a binder-free electrode for supercapacitors. Benefiting from the novel synthesis strategy and the 3D connect/quasi-connect structures, the as-prepared CuO/copper foam electrode can provide massive active sites for redox reactions, high electronic conductivity, short diffusion pathway for ions and effectively electrolyte penetrating. These characteristics together with the synergy effect between CuO and copper foam substrate lead to a high capacitance of 1641.4 mF cm (2), good rate capability (77.2% retention upon increasing the current density by 10 times) and good cyclability (79% retention after 10000 cycles). These results suggest that the CuO electrode demonstrates a good potential for high performance energy storage devices. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们已经开发出一种简单且经济高效的一步式表面氧化方法来合成三维(3D)花状花朵,类似于盛开的菊花,CuO层级纳米结构直接在作为铜的铜泡沫上源和集电器。所制备的样品可以直接用作超级电容器的无粘合剂电极。得益于新颖的合成策略和3D连接/准连接结构,所制备的CuO /铜泡沫电极可为氧化还原反应提供大量的活性位,高电子电导率,短的离子扩散途径并有效地渗透电解质。这些特性以及CuO和泡沫铜基板之间的协同效应导致1641.4 mF cm(2)的高电容,良好的倍率能力(将电流密度提高10倍时保留77.2%)和良好的可循环性(经过20%后保留79%) 10000个周期)。这些结果表明,CuO电极对高性能储能器件具有良好的潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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