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Mxene-Conducting Polymer Asymmetric Pseudocapacitors

机译:含Mxene的聚合物不对称伪电容器

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摘要

Conducting polymers (CPs) are attractive pseudocapacitive materials which show the highest capacitance under positive potentials in aqueous protic electrolytes. One way to expand their voltage window (thus energy density) in aqueous electrolytes is to manufacture asymmetric supercapacitors using distinctly different anodes. However, CPs lack matching pseudocapacitive anode materials that can perform well in protic electrolytes (e.g., sulfuric acid). 2D titanium carbide (Ti3C2Tx), MXene, as a universal pseudocapacitive anode material for a range of CPs, such as polyaniline, polypyrrole, and poly(3,4-ethylenedioxythiophene) deposited on reduced graphene oxide (rGO) sheets, is reported here. All-pseudocapacitive organic-inorganic asymmetric devices with MXene cathodes and rGO-polymer anodes can operate in voltage windows up to 1.45 V in 3 m H2SO4. Most importantly, these devices show outstanding cycling performance, outperforming many reported asymmetric pseudocapacitors.
机译:导电聚合物(CPs)是吸引人的假电容材料,在水性质子电解质中在正电势下显示出最高的电容。扩大其在水性电解质中的电压窗口(从而提高能量密度)的一种方法是使用截然不同的阳极来制造不对称超级电容器。然而,CP缺乏匹配的伪电容阳极材料,其在质子电解质(例如硫酸)中表现良好。此处报道了2D碳化钛(Ti3C2Tx)MXene,它是沉积在还原氧化石墨烯(rGO)片材上的一系列CP的通用伪电容阳极材料,例如聚苯胺,聚吡咯和聚(3,4-乙撑二氧噻吩)。具有MXene阴极和rGO聚合物阳极的全伪电容性有机-无机不对称器件可以在3 m H2SO4中在高达1.45 V的电压窗口中运行。最重要的是,这些器件表现出出色的循环性能,优于许多报道的不对称伪电容器。

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