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Electrochemical deposition of highly loaded polypyrrole on individual carbon nanotubes in carbon nanotube film for supercapacitor

机译:高负荷滤土对超级电容器碳纳米管膜单独碳纳米管的电化学沉积

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摘要

In this work, a core-shell structured pseudocapacitive anode is fabricated through electrochemical deposition of highly loaded (3.89 mg cm(-2)) polypyrrole (PPy) on individual carbon tubes in electrochemically pretreated carbon nanotube film (ECNT) to afford ECNT/PPy electrode. The core-shell structure significantly promotes the charge transfer for energy storage reaction and buffers the volume change of PPy during charge/discharge cycles, leading to much improved pseudocapacitive behaviors for ECNT/PPy. It can retain 75.2% of its capacitance (965.3 mF cm(-2) at 1 mA cm(-2)) when the discharge current increased 40 times to 40 mA cm(-2). After 10,000 galvanostatic charge/discharge cycles, ECNT/PPy can maintain 89.1% of its initial capacitance. The asymmetric supercapacitor (ASC) assembled by using ECNT/PPy and CNT/MnO2 as anode and cathode, respectively demonstrate a high volumetric energy density of 3.63 mWh cm(-3) at the power density of 13.86 mWcm(-3). After 10,000 galvanostatic charge/discharge cycles, the ASC can retain 89.0% of its capacitance, showing its good cyclic stability.
机译:在这项工作中,通过在电化学预处理的碳纳米管膜(ECNT)的各个碳管上的高负荷(3.89mg cm(-2))聚吡咯(PPY)的电化学沉积来制造核心壳结构的假阳极,以提供ECNT / PPY电极。核心壳结构显着促进了能量储存反应的电荷转移,并在充电/放电循环期间缓冲了PPY的体积变化,从而提高了ECNT / PPY的伪消约行为。当放电电流增加40 mAc(-2)时,它可以保留其电容的75.2%在1 mA cm(-2))上的电容(965.3mf cm(-2))。经过10,000个电静电充电/放电循环后,ECNT / PPY可以维持其初始电容的89.1%。通过使用EcNT / PPY和CNT / MNO2作为阳极和阴极组装的不对称超级电容器(ASC)分别在功率密度为13.86mWcm(-3)的高容量能量密度为3.63mwh cm(-3)。经过10,000个电静电电荷/放电循环后,ASC可以保留其电容的89.0%,显示其良好的循环稳定性。

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