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Pulse electrodeposited manganese oxide on carbon fibers as electrodes for high capacity supercapacitors

机译:脉冲电沉积在碳纤维上的氧化锰作为高容量超级电容器的电极

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摘要

Arrays of manganese dioxide (MnO2), a pseudocapacitive material, have been deposited on the carbon fibers (CF) of a carbon woven fabric by electrodeposition from a solution containing manganese sulfate and sulfuric acid using galvanostatic square waves. The thickness of the MnO2 was varied by increasing/decreasing the time of deposition, and the electrochemical performance of the MnO2 has been analyzed. The CF serves as a substrate material with high surface area, good electrical conductivity and excellent mechanical strength. The electrochemical properties of the resultant electrode were examined by cyclic voltammogram (CV), galvanostatic charge/discharge, and electrochemical impedance spectroscopy in a three-electrode system. From the specific capacitance calculations obtained from CV and charge-discharge, a high specific capacitance of 769 F g(-1) @ 5 mV s(-1) (low weight electrode) has been achieved. The maximum area capacitance, estimated from the charge-discharge curves, was 790 mF cm(-2) @ 5 mV s(-1). The high-performance is attributed to the double layer capacitance of the CFs combined with the pseudocapacitive nature of MnO2, the large surface area, and high degree of ordering of the ultrathin MnO2.
机译:二氧化锰(MNO2),伪偶联材料,通过电沉积在含有GALVANOTATIC SQUAL波的溶液中通过电沉积在碳织物的碳纤维(CF)上沉积在碳纤维上。通过增加/降低沉积时间来改变MnO 2的厚度,并分析了MnO 2的电化学性能。 CF用作具有高表面积,电导率良好的基底材料,以及优异的机械强度。通过循环伏安图(CV),电镀电荷/放电和三极系统中的电化学阻抗光谱检查所得电极的电化学性质。根据从CV和充电放电获得的特定电容计算,已经实现了769V(-1)×5MV S(-1)(低重量电极)的高比电容。从充电 - 放电曲线估计的最大面积电容为790mF cm(-2)@ 5 mv s(-1)。高性能归因于CFS的双层电容与MNO2,大表面积的伪涂膜性质相结合,具有超薄MNO2的高度排序。

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