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首页> 外文期刊>ACS nano >Carbon Nanotube-Based Supercapacitors with Excellent ac Line Filtering and Rate Capability via Improved Interfacial Impedance
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Carbon Nanotube-Based Supercapacitors with Excellent ac Line Filtering and Rate Capability via Improved Interfacial Impedance

机译:基于碳纳米管的超级电容器,通过改善的界面阻抗,具有出色的交流线路滤波和速率能力

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摘要

We report the fabrication of high-performance, self-standing composite sp(2)-carbon supercapacitor electrodes using single-walled carbon nanotubes (CNTs) as conductive binder. The 3-D mesoporous mesh architecture of CNT-based composite electrodes grants unimpaired ionic transport throughout relatively thick films and allows superior performance compared to graphene-based devices at an ac line frequency of 120 Hz. Metrics of 601 mu F/cm(2) with a -81 degrees phase angle and a rate capability (RC) time constant of 199 mu s are obtained for thin carbon films. The free-standing carbon films were obtained from a chlorosulfonic acid dispersion and interfaced to stainless steel current collectors with various surface treatments. (NI electrodes were able to cycle at 200 V/s and beyond, still showing a characteristic parallelepipedic cyclic votammetry shape at 1 kV/s. Current densities are measured in excess of 6400 A/g, and the electrodes retain more than 98% capacity after 1 million cycles. These promising results are attributed to a reduction of series resistance in the film through the CNT conductive network and especially to the surface treatment of the stainless steel current collector.
机译:我们报告使用单壁碳纳米管(CNT)作为导电粘合剂的高性能,自立式复合sp(2)-碳超级电容器电极的制造。基于CNT的复合电极的3-D中孔网状结构可在相对较厚的膜上实现不受影响的离子传输,并且与基于石墨烯的器件相比在120 Hz交流频率下具有优越的性能。对于薄碳膜,获得的度量值为601μF / cm(2),相位角为-81度,速率能力(RC)时间常数为199μs。自立式碳膜是从氯磺酸分散液中获得的,并通过各种表面处理与不锈钢集电器连接。 (NI电极能够以200 V / s或更高的速度循环,但仍显示出1 kV / s的特征平行六面体循环伏安法形状。测量的电流密度超过6400 A / g,并且电极保持超过98%的容量经过一百万次循环后,这些有希望的结果归因于薄膜通过CNT导电网络减少了串联电阻,尤其是不锈钢集电器的表面处理。

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