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Pseudocapacitive organic catechol derivative-functionalized three-dimensional graphene aerogel hybrid electrodes for high-performance supercapacitors

机译:用于高性能超级电容器的拟电容有机邻苯二酚衍生物功能化三维石墨烯气凝胶混合电极

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Bio-inspired and environmentally friendly chemical functionalization is a successful way to a new class of hybrid electrode materials for applications in energy storage. Quinone (Q)-hydroquinone (QH(2)) couples, a prototypical example of organic redox systems, provide fast and reversible proton-coupled electrontransfer reactions which lead to increased capacity. To achieve high capacitance and rate performance, constructing three-dimensional (3D) continuous porous structure is highly desirable. Here we report the hybrid electrodes (GA-C) consisting of 3D graphene aerogel (GA) functionalized with organic redox-active material, catechol derivative, for application to high-performance supercapacitors. The catechol derivative is adsorbed on the surface of GA through non-covalent interactions and promotes fast and reversible Q/QH(2) faradaic reactions, providing large specific capacitance of 188 Fg(-1) at a current of 1 Ag-1 and a specific energy of similar to 25 Wh kg(-1) at a specific power of similar to 18,000 W kg(-1). 3D continuous porous structure of GA electrode facilitates ion and electron transports, resulting in high rate performance (similar to 40 Fg(-1) at a current of 10 A g(-1)). (C) 2017 Elsevier B.V. All rights reserved.
机译:受生物启发和环境友好的化学功能化是成功将新型混合电极材料用于储能的成功途径。醌(Q)-氢醌(QH(2))对,是有机氧化还原系统的典型例子,可提供快速且可逆的质子耦合电子转移反应,从而增加容量。为了获得高电容和倍率性能,非常需要构造三维(3D)连续多孔结构。在这里,我们报告了由3D石墨烯气凝胶(GA)组成的混合电极(GA-C),该电极由有机氧化还原活性材料儿茶酚衍生物官能化而成,可应用于高性能超级电容器。邻苯二酚衍生物通过非共价相互作用吸附在GA表面,并促进快速和可逆的Q / QH(2)法拉第反应,在1 Ag-1的电流和1 A的电流下提供188 Fg(-1)的大比电容。在类似于18,000 W kg(-1)的比功率下的比能量类似于25 Wh kg(-1)。 GA电极的3D连续多孔结构有利于离子和电子传输,从而导致高倍率性能(类似于10 A g(-1)的电流下的40 Fg(-1))。 (C)2017 Elsevier B.V.保留所有权利。

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