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Catechol-Modified Activated Carbon Prepared by the Diazonium Chemistry for Application as Active Electrode Material in Electrochemical Capacitor

机译:重氮化学制备的邻苯二酚改性活性炭在电化学电容器中作为活性电极材料的应用

摘要

Activated carbon (Black Pearls 2000) modified with electroactive catechol groups was evaluated for charge storage application as active composite electrode material in an aqueous electrochemical capacitor. High surface area Black Pearls 2000 carbon, was functionalized by introduction of catechol groups by spontaneous reduction of catechol diazonium ions in situ prepared in aqueous solution from the corresponding amine. Change in the specific surface area and pore texture of the carbon following grafting was monitored by nitrogen gas adsorption measurements. The electrochemical properties and the chemical composition of the catechol-modified carbon electrodes were investigated by cyclic voltammetry. Such carbon-modified electrode combines well the faradaic capacitance, originating from the redox activity of the surface immobilized catechol groups, to the electrochemical double layer capacitance of the high surface area Black Pearls carbon. Due to the faradaic contribution, the catechol-modified electrode exhibits a higher specific capacitance (250 F/g) than pristine Carbon (150 F/g) over a potential range of -0.4 to 0.75 V in 1 M H2SO4. The stability of the modified electrode evaluated by long-time 1 charge/discharge cycling revealed a low decrease of the capacitance of the catechol-modified carbon due to the loss of the 1 catechol redox activity. Nonetheless, it was demonstrated that the benefit of redox groups persists for 10 000 constant current charge/discharge cycles.
机译:对用电活性邻苯二酚基团改性的活性炭(Black Pearls 2000)进行了评估,以用于电荷存储应用作为水性电化学电容器中的活性复合电极材料。通过自发还原在水溶液中由相应的胺原位制备的邻苯二酚重氮离子,通过引入邻苯二酚基团来官能化高表面积的Black Pearls 2000碳。通过氮气吸附测量监测接枝后碳的比表面积和孔结构的变化。通过循环伏安法研究了邻苯二酚修饰的碳电极的电化学性质和化学组成。这种碳修饰的电极很好地将源自表面固定的邻苯二酚基团的氧化还原活性的法拉第电容与高表面积黑珍珠碳的电化学双层电容结合。由于法拉第贡献,在1 M H2SO4中,在-0.4至0.75 V的电位范围内,邻苯二酚修饰的电极比原始碳(150 F / g)具有更高的比电容(250 F / g)。通过长时间的1次充电/放电循环评估的改性电极的稳定性表明,由于失去了1种邻苯二酚的氧化还原活性,邻苯二酚改性碳的电容降低幅度很小。然而,已证明氧化还原基团的益处在10000个恒定电流充电/放电循环中仍然存在。

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