首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Hydrothermal synthesis of reduced graphene oxide-modified NiCo2O4 nanowire arrays with enhanced reactivity for supercapacitors
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Hydrothermal synthesis of reduced graphene oxide-modified NiCo2O4 nanowire arrays with enhanced reactivity for supercapacitors

机译:具有增强的超级电容器反应性的石墨烯氧化物改性NicO2O4纳米线阵列的水热合成

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摘要

Supercapacitors have attracted great attentions for their excellent performance in the energy devices. In this work, the reduced graphene oxide (rGO) modified NiCo2O4 (rGO/NiCo2O4) are fabricated by a simple hydrothermal route. After the rGO modification, the sea urchin-like structure of NiCo2O4 was broken and the NiCo2O4 nanowires would intertwine with each other. Benefit from the large surface areas and the active sites of this unconsolidated structure, the as-prepared rGO/NiCo2O4 exhibited the excellent specific capacitance of 1003 F g(-1) at the current density of 1 A g(-1) and enhanced rate capability (89% from 1 to 10 A g(-1)). And the cycle stability could reach 57% retention after the 10000 cycles. The rGO/NiCo2O4 composite might hold great promise for future application of the high-performance supercapacitor. (C) 2019 Elsevier B.V. All rights reserved.
机译:超级电容器引起了它们在能量设备中具有出色的性能的良好关注。 在这项工作中,通过简单的水热途径制造了石墨烯氧化物(Rgo)改性的NicO 2 O 4(Rgo / NicO 2 O 4)。 在RGO改性后,Nico2O4的海胆状结构被破坏,Nico2O4纳米线将彼此交叉。 从大表面区域和该未覆盖结构的有源部位受益,AS制备的RGO / NicO2O4在电流密度为1 A g(-1)和增强的速率下表现出1003 f g(-1)的优异比电容 能力(从1到10 a g(-1)的89%)。 在10000次循环后,循环稳定性可达到57%的保留。 RGO / Nico2O4综合可能对未来的高性能超级电容器的应用可能具有很大的承诺。 (c)2019 Elsevier B.v.保留所有权利。

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