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Chemical stability of γ-butyrolactone-based electrolytes for aluminum electrolytic capacitors

机译:铝电解电容器用γ-丁内酯基电解质的化学稳定性

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γ-Butyrolactone-based electrolytes have been used as the operating electrolytes for aluminum electrolytic capacitors. The chemical stability of these electrolytes at elevated temperatures has been examined by monitoring the decrease in their electrolytic conductivities. The deteriorated electrolytes were analyzed by gas and liquid chromatography and the conductivity decrease was directly correlated with the loss of acid components. In quaternary ammonium hydrogen maleate/γ-butyrolactone electrolytes, the maleate anion decomposed by decarboxylation resulting in a complex polymer containing polyester and polyacrylate structures. Quaternary ammonium benzoate/γ-butyrolactoneelectrolytes decomposed by SN2 reactions giving alkyl benzoates and trialkylamines. The deterioration of the carboxylate salt/γ-butyrolactoneelectrolytes was accelerated by electrolysis.
机译:γ-丁内酯基电解质已经用作铝电解电容器的工作电解质。这些电解质在高温下的化学稳定性已通过监测其电解电导率的降低进行了检验。通过气相色谱和液相色谱分析劣化的电解质,并且电导率的降低与酸成分的损失直接相关。在马来酸氢季铵/γ-丁内酯电解质中,马来酸根阴离子通过脱羧作用分解,从而形成了包含聚酯和聚丙烯酸酯结构的复合聚合物。通过SN2反应分解的苯甲酸季铵盐/γ-丁内酯电解质,生成苯甲酸烷基酯和三烷基胺。电解加速了羧酸盐/γ-丁内酯电解质的降解。

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