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Preparation of Porous Carbon Nanofibers with Tailored Porosity for Electrochemical Capacitor Electrodes

机译:电化学电容器电极孔隙度定制的多孔碳纳米纤维的制备

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摘要

Porous carbon electrodes that accumulate charges at the electrode/electrolyte interface have been extensively investigated for use as electrochemical capacitor (EC) electrodes because of their great attributes for driving high-performance energy storage. Here, we report porous carbon nanofibers (p-CNFs) for EC electrodes made by the formation of a composite of monodisperse silica nanoparticles and polyacrylonitrile (PAN), oxidation/carbonization of the composite, and then silica etching. The pore features are controlled by changing the weight ratio of PAN to silica nanoparticles. The electrochemical performances of p-CNF as an electrode are estimated by measuring cyclic voltammetry and galvanostatic charge/discharge. Particularly, the p-CNF electrode shows exceptional areal capacitance (13 mF cm at a current of 0.5 mA cm ), good rate-retention capability (~98% retention of low-current capacitance), and long-term cycle stability for at least 5000 charge/discharge cycles. Based on the results, we believe that this electrode has potential for use as high-performance EC electrodes.
机译:多孔碳电极在电极/电解质界面处积累电荷,已被广泛研究用作电化学电容器(EC)电极,因为它们具有驱动高性能能量存储的巨大特性。在这里,我们报道了用于EC电极的多孔碳纳米纤维(p-CNFs),该碳纳米纤维是由单分散二氧化硅纳米颗粒和聚丙烯腈(PAN)的复合物的形成,复合物的氧化/碳化以及随后的二氧化硅蚀刻制成的。通过改变PAN与二氧化硅纳米颗粒的重量比来控制孔特征。通过测量循环伏安法和恒电流充电/放电来评估p-CNF作为电极的电化学性能。特别是,p-CNF电极显示出出色的面电容(在0.5 mA cm的电流下为13 mF cm),良好的速率保持能力(〜98%的小电流电容保持率)以及至少至少90%的长期循环稳定性5000次充电/放电循环。根据结果​​,我们认为该电极具有用作高性能EC电极的潜力。

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