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首页> 外文期刊>Journal of Colloid and Interface Science >In situ synthesis of Mn3O4 on Ni foam/graphene substrate as a newly self-supported electrode for high supercapacitive performance
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In situ synthesis of Mn3O4 on Ni foam/graphene substrate as a newly self-supported electrode for high supercapacitive performance

机译:原位合成Ni泡沫/石墨烯基材的MN3O4,作为一种用于高超级性能的新自支撑电极

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摘要

A newly self-supported electrode composed of Mn3O4 on Ni foam/graphene (NF/graphene/Mn3O4) was synthesized in situ by electrodeposition, and was used as a supercapacitor electrode for the first time. An ultrahigh specific capacitance of 630 Fg(-1) can be achieved at a current density of 0.5 Ag-1. The maximum energy density of 94.4 Wh kg(-1) can be achieved, and the capacitance retention can be maintained about 97% after 20,000 cycles at 10 Ag-1. The electrochemical properties, including specific capacitance, energy density and cycling performance, were better than those in previous reports on Mn3O4-graphene electrodes. Such an outstanding property may be attributed to its unique characteristics, such as self-supported structure, favorable electric conductivity and cellular-like porous morphology. (C) 2018 Elsevier Inc. All rights reserved.
机译:通过电沉积地原位合成由Ni泡沫/石墨烯(NF / Graphene / Mn3O4)组成的新自支撑电极,首次使用作为超级电容器电极。 在0.5Ag-1的电流密度下可以实现630 FG(-1)的超高特定电容。 可以实现94.4WH kg(-1)的最大能量密度,并且在10g-1的20,000次循环后,电容保持可以保持约97%。 电化学性质,包括特定电容,能量密度和循环性能,优于MN3O4-石墨烯电极的先前报道中的电化学性质。 这种优秀的财产可能归因于其独特的特征,例如自支持的结构,有利的电导率和细胞样多孔形态。 (c)2018 Elsevier Inc.保留所有权利。

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