超级电容器
材料科学
纳米复合材料
化学工程
复合数
氧化钴
石墨氮化碳
电极
纳米颗粒
氢氧化钾
假电容器
电化学
电容
纳米技术
氧化物
复合材料
化学
有机化学
物理化学
工程类
催化作用
光催化
冶金
作者
Manesh A. Yewale,Vineet Kumar,Aviraj M. Teli,Sonali A. Beknalkar,Umesh T. Nakate,Dong-Kil Shin
出处
期刊:Micromachines
[Multidisciplinary Digital Publishing Institute]
日期:2024-03-20
卷期号:15 (3): 414-414
被引量:14
摘要
The hydrothermal method has been utilized to synthesize graphitic carbon nitride (g-C3N4) polymers and cobalt oxide composites effectively. The weight percentage of g-C3N4 nanoparticles influenced the electrochemical performance of the Co3O4-g-C3N4 composite. In an aqueous electrolyte, the Co3O4-g-C3N4 composite electrode, produced with 150 mg of g-C3N4 nanoparticles, revealed remarkable electrochemical performance. With an increase in the weight percentage of g-C3N4 nanoparticles, the capacitive contribution of the Co3O4-g-C3N4 composite electrode increased. The Co3O4-g-C3N4-150 mg composite electrode shows a specific capacitance of 198 F/g. The optimized electrode, activated carbon, and polyvinyl alcohol gel with potassium hydroxide were used to develop an asymmetric supercapacitor. At a current density of 5 mA/cm2, the asymmetric supercapacitor demonstrated exceptional energy storage capacity with remarkable energy density and power density. The device retained great capacity over 6k galvanostatic charge–discharge (GCD) cycles, with no rise in series resistance following cyclic stability. The columbic efficiency of the asymmetric supercapacitor was likewise high.
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