首页> 外文期刊>Journal of power sources >Vapor-phase polymerization of poly(3,4-ethylenedioxythiophene) (PEDOT) on commercial carbon coated aluminum foil as enhanced electrodes for supercapacitors
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Vapor-phase polymerization of poly(3,4-ethylenedioxythiophene) (PEDOT) on commercial carbon coated aluminum foil as enhanced electrodes for supercapacitors

机译:聚(3,4-乙撑二氧噻吩)(PEDOT)在市售涂碳铝箔上的气相聚合,作为超级电容器的增强电极

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摘要

Laminar composite electrodes are prepared for application in supercapacitors using a catalyzed vaporphase polymerization (VPP) of 3,4-ethylenedioxythiophene (EDOT) on the surface of commercial carbon coated aluminum foil. These highly electrically conducting polymer films provide for rapid and stable power storage per gram at room temperature. The chemical composition, surface morphology and electrical properties are characterized by Raman spectroscopy, scanning electron microscopy (SEM), and conducting atomic force microscopy (C-AFM). A series of electrical measurements including cyclic voltammetry (CV), charge-discharge (CD) and electrochemical impedance spectroscopy are also used to evaluate electrical performance. The processing temperature of VPP shows a significant effect on PEDOT morphology, the degree of orientation and its electrical properties. The relatively high temperature leads to high specific area and large conductive domains of PEDOT layer which benefits the capacitive behavior greatly according to the data presented. Since the substrate is already highly conductive, the PEDOT based composite can be used as electrode materials directly without adding current collector. By this simple and efficient process, PEDOT based composites exhibit specific capacitance up to 134 F g(-1) with the polymerization temperature of 110 degrees C. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用3,4-乙撑二氧噻吩(EDOT)的催化气相聚合(VPP)在市售涂有碳的铝箔表面上制备层状复合电极,以用于超级电容器。这些高导电性的聚合物薄膜可在室温下提供每克快速而稳定的功率存储。化学成分,表面形态和电性能通过拉曼光谱,扫描电子显微镜(SEM)和导电原子力显微镜(C-AFM)表征。包括循环伏安法(CV),充放电(CD)和电化学阻抗谱在内的一系列电气测量也可用于评估电气性能。 VPP的加工温度对PEDOT的形貌,取向度及其电性能均具有显着影响。相对较高的温度导致PEDOT层具有较高的比表面积和较大的导电区域,根据所提供的数据,极大地有利于电容性能。由于基材已经具有很高的导电性,因此无需添加集电器即可将基于PEDOT的复合材料直接用作电极材料。通过这种简单而有效的方法,基于PEDOT的复合材料在110摄氏度的聚合温度下显示出高达134 F g(-1)的比电容。(C)2015 Elsevier B.V.保留所有权利。

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