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A Redox-Active Binder for Electrochemical Capacitor Electrodes

机译:电化学电容器电极的氧化还原活性粘合剂

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摘要

A promising strategy for increasing the performance of supercapacitors is proposed. Until now, a popular strategy for increasing the specific capacity of the electrode consists of grafting redox molecules onto a high surface area carbon structure to add a faradaic contribution to the charge storage. Unfortunately, the grafting of molecules to the carbon surface leads to a dramatic decrease of the electrochemical performances of the composite material. Herein, we used the organic binder as an active material in the charge/discharge process. Redox molecules were attached onto its polymeric skeleton to obtain a redox binder with the dual functionalities of both the binder and the active material. In this way, the electrochemical performance was improved without detrimentally affecting the properties of the porous carbon. Results showed that the use of a redox binder is promising for enhancing both energy and power densities.
机译:提出了一种提高超级电容器性能的有前途的策略。迄今为止,增加电极比容量的一种流行策略是将氧化还原分子接枝到高表面积碳结构上,从而为电荷存储增加法拉第贡献。不幸的是,分子接枝到碳表面上导致复合材料的电化学性能急剧下降。在此,我们在充电/放电过程中使用有机粘合剂作为活性材料。将氧化还原分子连接到其聚合物骨架上,以获得具有粘合剂和活性材料的双重功能的氧化还原粘合剂。以这种方式,改善了电化学性能,而没有不利地影响多孔碳的性能。结果表明,使用氧化还原粘合剂有望提高能量和功率密度。

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