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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Electropolymerized polypyrrole nanocomposites with cobalt oxide coated on carbon paper for electrochemical energy storage
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Electropolymerized polypyrrole nanocomposites with cobalt oxide coated on carbon paper for electrochemical energy storage

机译:碳纸上涂覆氧化钴的电聚合聚吡咯纳米复合材料,用于电化学储能

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Polypyrrole (PPy)/cobalt oxide (Co3O4)/carbon paper (CP) ternary composites prepared by potentiodynamic electropolymerization of pyrrole monomers onto flower-like Co3O4 (f-Co3O4) nanoparticles coated on CP (PPy/f-Co3O4/CP) were studied serving as electrode materials for supercapacitor applications. The f-Co3O4 with unique porous morphology on CP was first obtained by drop casting Co3O4 ethanol suspensions onto CP. Ball-like Co3O4 (b-Co3O4) with dense structure was also prepared for comparison. The electrochemical results including cyclic voltammetry (CV) and galvanostatic charge-discharge (GCD) in 2.0 M KOH aqueous solution revealed that the PPy/Co3O4/CP ternary composites exhibited superior supercapacitive performances than both f-Co3O4/CP and b-Co3O4/CP. Specifically, a specific capacitance of 398.4 F/g was obtained for the PPy/f-Co3O4/CP, much higher than that of 40.9 and 22.0 F/g for f-Co3O4/CP and b-Co3O4/CP, respectively. The electrochemical impedance spectroscopy studies suggested that better capacitive properties in PPy/f-Co3O4/CP were attributed to the pseudocapacitive contributions from the PPy nanocoating and greatly reduced charge transfer resistance in the composites. PPy/f-Co3O4/CP also displayed an excellent cycling stability with negligible capacitance loss after 1000 cycles. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了通过吡咯单体的电动力电聚合到涂在CP上的花状Co3O4(f-Co3O4)纳米粒子上制备的吡咯(PPy)/氧化钴(Co3O4)/碳纸(CP)三元复合物(PPy / f-Co3O4 / CP)用作超级电容器应用的电极材料。首先通过将Co3O4乙醇悬浮液滴铸到CP上获得在CP上具有独特多孔形态的f-Co3O4。还准备了具有致密结构的球形Co3O4(b-Co3O4)进行比较。电化学结果(包括在2.0 M KOH水溶液中的循环伏安法(CV)和恒电流充放电(GCD))表明,PPy / Co3O4 / CP三元复合材料比f-Co3O4 / CP和b-Co3O4 / CP均表现出优异的超电容性能。具体而言,PPy / f-Co3O4 / CP的比电容为398.4 F / g,远高于f-Co3O4 / CP和b-Co3O4 / CP的比电容40.9和22.0 F / g。电化学阻抗谱研究表明,PPy / f-Co3O4 / CP中更好的电容性能归因于PPy纳米涂层的拟电容作用,并且大大降低了复合材料的电荷转移阻力。 PPy / f-Co3O4 / CP还表现出出色的循环稳定性,经过1000次循环后电容损失可忽略不计。 (C)2015 Elsevier Ltd.保留所有权利。

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