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Electrochemical characterization of electrospun activated carbon nanofibers as an electrode in supercapacitors

机译:静电纺丝活性炭纳米纤维作为超级电容器中电极的电化学表征

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摘要

A new form of nanofibre web electrode has been fabricated for a supercapacitor using electrospun polybenzimidazol (PBI)-based activated carbon nanofibres. A FBI solution in dimethyl acetamide (DMAc) is electrospun to a fibre web that consists of 250 nm ultra-fine fibres. The web is successfully activated, by'steam of 30 vol. % and the specific surface area of the activated web is in the range of 500-1220 m~(-1). The electrochemical properties of electrodes and the capacitive behaviour of the resulting capacitors are systematically studied using cyclic voltammetry, ac impedance and constant-current discharge tests. The specific capacitance ranges from 35 to 202 F g~(-1), depending on the activation temperature. The nanofibre web activated at 800 deg C exhibits the largest specific surface area and results in the highest capacitance. The capacitance of the electrical double-layer capacitor is strongly dependent on the specific surface area, pore volume, and resistivity of the samples.
机译:已经使用电纺聚苯并咪唑(PBI)基活性炭纳米纤维为超级电容器制造了一种新型的纳米纤维网状电极。将FBI的二甲基乙酰胺(DMAc)溶液电纺成包含250 nm超细纤维的纤维网。通过30 vol的团队成功激活了Web。 %,并且活化的网的比表面积在500-1220m-1(-1)的范围内。使用循环伏安法,交流阻抗和恒流放电测试系统地研究了电极的电化学性质和所得电容器的电容行为。取决于激活温度,比电容在35至202 F g〜(-1)的范围内。在800摄氏度下活化的纳米纤维网表现出最大的比表面积并产生最高的电容。双电层电容器的电容在很大程度上取决于比表面积,孔体积和样品的电阻率。

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