Hierarchical Activated Carbon-MnO(2) Composite for Wide Potential Window Asymmetric Supercapacitor Devices in Organic Electrolyte

用于有机电解质中宽电位窗口非对称超级电容器器件的分级活性炭-MnO(2)复合材料

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Abstract

The consumption of electrical energy grows alongside the development of global industry. Generating energy storage has become the primary focus of current research, examining supercapacitors with high power density. The primary raw material used in supercapacitor electrodes is activated carbon (AC). To improve the performance of activated carbon, we used manganese dioxide (MnO(2)), which has a theoretical capacitance of up to 1370 Fg(-1). The composite-based activated carbon with a different mass of 0-20% MnO(2) was successfully introduced as the positive electrode. The asymmetric cell supercapacitors based on activated carbon as the anode delivered an excellent gravimetric capacitance, energy density, and power density of 84.28 Fg(-1), 14.88 Wh.kg(-1), and 96.68 W.kg(-1), respectively, at 1 M Et(4)NBF(4), maintaining 88.88% after 1000 test cycles.

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