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Design of NiO Flakes@CoMoO4 Nanosheets Core-Shell Architecture on Ni Foam for High-Performance Supercapacitors

机译:用于高性能超级电容器的Ni泡沫上NiO Flakes @ CoMoO4纳米片核壳结构的设计

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摘要

As typical electrode materials for supercapacitors, low specific capacitance and insufficient cycling stability of transition metal oxides (TMOs) are still the problems that need to be solved. Design of core-shell structure is considered as an effective method for preparation of high-performance electrode materials. In this work, NiO flakes@CoMoO4 nanosheets/Ni foam (NiO flakes@CoMoO4 NSs/NF) core-shell architecture was constructed by a two-step hydrothermal method. Interestingly, the CoMoO4 NSs are vertically grown on the surface of NiO flakes, forming a two-dimensional (2D) branched core-shell structure. The porous core-shell architecture has relatively high surface area, effective ions channels, and abundant redox sites, resulting in excellent electrochemical performance. As a positive electrode for supercapacitors, NiO flakes@CoMoO4 NSs/NF core-shell architecture exhibits excellent capacitive performance in terms of high specific capacitance (1097 F/g at 1 A/g) and outstanding cycling stability (97.5% after 2000 circles). The assembled asymmetric supercapacitor (ASC) of NiO flakes@CoMoO4 NSs/NF//active carbon (AC)/NF possesses a maximum energy density of 25.8 Wh/kg at power density of 894.7 W/kg. The results demonstrate that NiO flakes@CoMoO4 NSs/NF electrode displays potential applications in supercapacitors and the design of 2D branched core-shell architecture paves an ideal way to obtain high-performance TMOs electrodes.Electronic supplementary materialThe online version of this article (10.1186/s11671-019-3054-3) contains supplementary material, which is available to authorized users.
机译:作为用于超级电容器的典型电极材料,过渡金属氧化物(TMO)的低比电容和不足的循环稳定性仍然是需要解决的问题。设计核-壳结构被认为是制备高性能电极材料的有效方法。在这项工作中,NiO薄片@ CoMoO4纳米片/ Ni泡沫(NiO薄片@ CoMoO4 NSs / NF)核壳结构是通过两步水热法构建的。有趣的是,CoMoO4 NSs在NiO薄片的表面上垂直生长,形成二维(2D)分支的核-壳结构。多孔核-壳结构具有相对较高的表面积,有效的离子通道和丰富的氧化还原位点,从而具有出色的电化学性能。作为超级电容器的正极,NiO薄片@ CoMoO4 NSs / NF核壳结构在高比电容(1A / g时为1097F / g)和出色的循环稳定性(2000圈后为97.5%)方面表现出出色的电容性能。 NiO薄片@ CoMoO4 NSs / NF //活性炭(AC)/ NF的组装式不对称超级电容器(ASC)在894.7 W / kg的功率密度下具有25.8 Wh / kg的最大能量密度。结果表明NiO flakes @ CoMoO4 NSs / NF电极在超级电容器中显示出潜在的应用,二维支链核壳结构的设计为获得高性能TMO电极提供了理想的方法。电子补充材料本文的在线版本(10.1186 / s11671-019-3054-3)包含补充材料,授权用户可以使用。

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