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High Energy Density Asymmetric Supercapacitor Based on NiOOH/Ni3S2/3D Graphene and Fe3O4/Graphene Composite Electrodes

机译:基于NiOOH / Ni3S2 / 3D石墨烯和Fe3O4 /石墨烯复合电极的高能量密度不对称超级电容器

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摘要

The application of the composite of Ni3S2 nanoparticles and 3D graphene as a novel cathode material for supercapacitors is systematically investigated in this study. It is found that the electrode capacitance increases by up to 111% after the composite electrode is activated by the consecutive cyclic voltammetry scanning in 1 M KOH. Due to the synergistic effect, the capacitance and the diffusion coefficient of electrolyte ions of the activated composite electrode are ca. 3.7 and 6.5 times higher than those of the Ni3S2 electrode, respectively. Furthermore, the activated composite electrode exhibits an ultrahigh specific capacitance of 3296 F/g and great cycling stability at a current density of 16 A/g. To obtain the reasonable matching of cathode/anode electrodes, the composite of Fe3O4 nanoparticles and chemically reduced graphene oxide (Fe3O4/rGO) is synthesized as the anode material. The Fe3O4/rGO electrode exhibits the specific capacitance of 661 F/g at 1 A/g and excellent rate capability. More importantly, an asymmetric supercapacitor fabricated by two different composite electrodes can be operated reversibly between 0 and 1.6 V and obtain a high specific capacitance of 233 F/g at 5 mV/s, which delivers a maximum energy density of 82.5 Wh/kg at a power density of 930 W/kg.
机译:本研究系统地研究了Ni3S2纳米粒子和3D石墨烯的复合材料作为新型超级电容器阴极材料的应用。发现在1 M KOH中通过连续循环伏安法扫描激活复合电极后,电极电容最多增加111%。由于协同作用,被激活的复合电极的电容和电解质离子的扩散系数约为。分别是Ni3S2电极的3.7和6.5倍。此外,活化的复合电极在电流密度为16 A / g时显示出3296 F / g的超高比电容和出色的循环稳定性。为了获得阴极/阳极电极的合理匹配,合成了Fe3O4纳米粒子和化学还原氧化石墨烯(Fe3O4 / rGO)的复合材料作为阳极材料。 Fe3O4 / rGO电极在1 A / g的条件下具有661 F / g的比电容,并且具有出色的倍率能力。更重要的是,由两个不同的复合电极制成的不对称超级电容器可以在0至1.6 V之间可逆操作,并在5 mV / s的条件下获得233 F / g的高比电容,从而在82.5 atWh / kg的条件下提供最大能量密度。功率密度为930 W / kg。

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