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Enhanced specific capacitance of a novel ternary polypyrrole incorporated with prussian blue and mesoporous carbon black for high performance supercapacitor applications

机译:结合了普鲁士蓝和介孔炭黑的新型三元聚吡咯的比电容增强,可用于高性能超级电容器应用

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摘要

A facile ternary composite of polypyrrole (PPy), prussian blue (PB) and carbon black (CB), PPy-PB-CB is synthesized by oxidative polymerization of pyrrole and formation of PB on CB to achieve efficient electrode material for supercapacitor. The polymer composite is characterized structurally and morphologically; CV, GCD and EIS techniques are used to evaluate the capacitive behavior of the ternary composite. PPy-PB-CB electrode exhibits a specific capacitance of 163.7 F g(-1) in neutral electrolyte, KCl which is superior to PPy, PPy-PB and PPy-CB electrode materials. Moreover, the ternary composite retains 98.35% of its initial capacitance even after 2000 cycles, exhibits high specific power, 10.78 kW kg(-1) and high specific energy, 18.1 Wh kg(-1). The excellent performance of the ternary polymer composite is attributed to the synergistic effect of high specific capacitance of pseudocapacitive electrodes, namely, PPy, and PB and better reversible nature of EDLC electrode, CB and its porosity.
机译:PPy-PB-CB是聚吡咯(PPy),普鲁士蓝(PB)和炭黑(CB)的三元复合物,是通过吡咯的氧化聚合反应和在CB上形成PB合成的,从而获得高效的超级电容器电极材料。聚合物复合材料在结构和形态上都有特点。 CV,GCD和EIS技术用于评估三元复合材料的电容性能。 PPy-PB-CB电极在中性电解液KCl中的比电容为163.7 F g(-1),优于PPy,PPy-PB和PPy-CB电极材料。此外,三元复合材料即使在2000次循环后仍保持其初始电容的98.35%,显示出高比功率10.78 kW kg(-1)和高比能18.1 Wh kg(-1)。三元聚合物复合材料的优异性能归因于伪电容电极PPy和PB的高比电容的协同效应,以及EDLC电极,CB及其孔隙率的可逆性更好。

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