首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Hydrothermal synthesis of CuCo2O4/CuO nanowire arrays and RGO/Fe2O3 composites for high-performance aqueous asymmetric supercapacitors
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Hydrothermal synthesis of CuCo2O4/CuO nanowire arrays and RGO/Fe2O3 composites for high-performance aqueous asymmetric supercapacitors

机译:用于高性能水性非对称超级电容器的CuCo2O4 / CuO纳米线阵列和RGO / Fe2O3复合材料的水热合成

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摘要

The applications of traditional asymmetric supercapacitors are restricted due to the low specific capacitance of carbon negative materials. The rational design of positive and negative electrodes that afford high-performance asymmetric devices is particularly important. In this paper, we fabricate a cost-effective, environmental-friendly aqueous asymmetric supercapacitor by using CuCo2O4/CuO nanowire arrays as the positive electrode and RGO/Fe2O3 composites as the negative electrode. The assembled device exhibits a high energy density of 33.0 W h kg(-1) at a power density of 200 W kg(-1), and it still operates at a high power density of 8.0 kW kg(-1) with an energy density of 9.1 W h kg(-1). The current strategy will provide a fresh route for the design and fabrication of novel asymmetric supercapacitors with high energy density and high power density.
机译:传统的不对称超级电容器的应用由于碳负极材料的低比电容而受到限制。提供高性能非对称器件的正负电极的合理设计尤为重要。在本文中,我们以CuCo2O4 / CuO纳米线阵列为正极,以RGO / Fe2O3复合材料为负极,制造了一种经济高效,环保的水性不对称超级电容器。组装后的设备在200 W kg(-1)的功率密度下表现出33.0 W h kg(-1)的高能量密度,并且在能量仍然为8.0 kW kg(-1)的高功率密度下仍可运行密度为9.1 W h kg(-1)。当前的策略将为设计和制造具有高能量密度和高功率密度的新型不对称超级电容器提供一条新途径。

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