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Hybrid Electrodes by In-Situ Integration of Graphene and Carbon-Nanotubes in Polypyrrole for Supercapacitors

机译:石墨烯和碳纳米管在聚吡咯中原位集成的超级电容器混合电极

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摘要

Supercapacitors also known as electrochemical capacitors, that store energy via either Faradaic or non-Faradaic processes, have recently grown popularity mainly because they complement, and can even replace, conventional energy storage systems in variety of applications. Supercapacitor performance can be improved significantly by developing new nanocomposite electrodes which utilizes both the energy storage processes simultaneously. Here we report, fabrication of the freestanding hybrid electrodes, by incorporating graphene and carbon nanotubes (CNT) in pyrrole monomer via its in-situ polymerization. At the scan rate of 5 mV s−1, the specific capacitance of the polypyrrole-CNT-graphene (PCG) electrode film was 453 F g−1 with ultrahigh energy and power density of 62.96 W h kg−1 and 566.66 W kg−1 respectively, as shown in the Ragone plot. A nanofibrous membrane was electrospun and effectively used as a separator in the supercapacitor. Four supercapacitors were assembled in series to demonstrate the device performance by lighting a 2.2 V LED.
机译:通过法拉第法或非法拉第法存储能量的超级电容器(也称为电化学电容器)最近变得越来越流行,主要是因为它们可以补充甚至可以替代各种应用中的常规能量存储系统。通过开发同时利用两种能量存储过程的新型纳米复合电极,可以大大提高超级电容器的性能。在这里,我们报告了通过在原位聚合中将石墨烯和碳纳米管(CNT)掺入吡咯单体中来制造独立式混合电极的过程。在5 mV s -1 的扫描速率下,聚吡咯-CNT-石墨烯(PCG)电极膜的比电容为453 F g -1 ,具有超高能量和如Ragone图所示,功率密度分别为62.96 W h kg -1 和566.66 W kg -1 。将纳米纤维膜电纺丝并有效地用作超级电容器中的隔板。串联组装了四个超级电容器,通过点亮2.2 V LED来演示器件性能。

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