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High-performance flexible supercapacitor based on carbon cloth through in-situ electrochemical exfoliation and re-deposition in neutral electrolyte

机译:基于碳布的高性能柔性超级电容器通过原位电化学剥离和中性电解质再沉积

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摘要

A facile approach for fabricating flexible electrodes was presented by using simultaneously commercial carbon cloth as three-dimensional conductive support and raw material source of graphene sheets through in-situ electrochemical exfoliation and re-deposition in same sulfate electrolyte system. The capacitive properties of carbon cloth were distinctly boosted through electrochemical treatment, which strongly depended on the nature of metal ions in the sulfate electrolyte. Moreover, the highest capacitive properties could be obtained for Li2SO4 among all the electrolyte systems, benefiting from thick and dense but porous graphene layers and high hydrophilic properties of the electrode. The assembled supercapacitor possessed large specific capacitance (292.8 mF cm(-2) at 2 mA cm(-2)), high rate capability as well as high mechanical and cyclic stability. This approach has been demonstrated to be a simple and green route under mild condition for low-cost fabricating all-solid state supercapacitors with high charge storage ability. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过使用同时商品碳布作为石墨烯片的三维导电支撑和原料源通过原位电化学剥离和在相同的硫酸盐电解质系统中的再沉积来提出一种用于制造柔性电极的容易方法。通过电化学处理明显地升高了碳布的电容性质,这强烈依赖于硫酸盐电解质中金属离子的性质。此外,可以获得所有电解质系统中的Li2SO4的最高电容性质,受益于厚,致密但多孔的石墨烯层和电极的高亲水性。组装的超级电容器具有大的特定电容(292.8mF cm(-2),在2 mA cm(-2)),高速率能力以及高机械和循环稳定性。这种方法已被证明是在温和条件下的简单和绿色路线,用于低成本制造的全固态超级电容器,具有高电荷存储能力。 (c)2019年elestvier有限公司保留所有权利。

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