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Degradation Characteristics of Electric Double-Layer Capacitors Consisting of High Surface Area Carbon Electrodes with Organic Electrolyte Solutions

机译:高表面积碳电极与有机电解质溶液组成的双层电容器的降解特性

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Aging characteristics of electric double-layer capacitors (EDLCs) comprising high surface area carbon electrodes with organic electrolyte solutions have been examined under high-voltage (high cell-potential) and high-temperature cycling conditions. The influences of the electrolyte components on decreasing the capacitance were investigated for cells using different electrolyte compositions. The use of acetonitrile (AN) as the electrolyte solvent in the cell led to higher cycling capacitance than those using alkyl carbonate solvents, such as propylene carbonate or ethylene carbonate mixed with dimethyl carbonate, under moderate cycling conditions. However, when the cycling was done with a higher operating voltage (>3.5 V), significant capacitance degradation was observed for the cells using AN-based electrolytes. The EDLC cells using carbonate-based electrolytes showed moderate degradation behavior even at higher operating voltages. With respect to the electrolytic salt, cells using LiBF4 generally showed lower durability than cells using tetraethylammonium salt, TEABF(4), especially at high operating voltages (>3.5 V). The mechanism of the decreasing capacitance with repeated cycle is discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:已经在高压(高电池电势)和高温循环条件下检查了包含高表面积碳电极和有机电解质溶液的双电层电容器(EDLC)的老化特性。对于使用不同电解质组合物的电池,研究了电解质组分对减小电容的影响。在中等循环条件下,与使用碳酸烷基酯溶剂(例如碳酸亚丙酯或碳酸亚乙酯与碳酸二甲酯混合)相比,乙腈(AN)作为电池中的电解质溶剂可产生更高的循环电容。但是,当使用较高的工作电压(> 3.5 V)进行循环时,对于使用基于AN的电解质的电池,会观察到明显的电容衰减。使用碳酸盐基电解质的EDLC电池即使在较高的工作电压下也显示出适度的降解行为。对于电解盐,使用LiBF4的电池通常显示出比使用四乙铵盐TEABF(4)的电池更低的耐久性,特别是在高工作电压(> 3.5 V)下。讨论了重复循环使电容减小的机理。 (C)2016 Elsevier Ltd.保留所有权利。

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