Charge-discharge cyclability of ultracapacitor with glass wool separator under high concentrated sulfuric acid

Mohd Ferdaus Mohd Yaacob, Z. A. Noorden, J. J. Jamian
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引用次数: 2

Abstract

The paper evaluates the charge-discharge cyclability of ultracapacitor with glass wool separator under various concentration of aqueous sulfuric acid (H2SO4) electrolytes. For lower concentrated electrolyte of 1 mol/dm3 H2SO4, the performance was compared to an ultracapacitor with conventional cellulose separator. Two-electrode ultracapacitors were constructed by sandwiching two activated carbon electrodes with each electrolyte-containing separator material. The cyclability test was performed with constant charge-discharge current of 10 mA for up to 300 cycles. Prior to the cyclability test, the constructed ultracapacitors were evaluated based on cyclic voltammetry and galvanostatic tests. The glass wool-based capacitor has performed comparably to the conventional cellulose-based capacitor in terms of its specific capacitance and internal resistance for up to 300 cycles. Interestingly, in a higher concentrated electrolyte of 18 mol/dm3 H2SO4, the specific capacitance of the glass wool-based ultracapacitor is 40% greater than of 1 mol/dm3 H2SO4 electrolyte. It is envisaged that by applying the glass wool as the separator coupled, with high concentration aqueous electrolyte may lead to higher rating ultracapacitor at relatively lower cost as compared to an organic electrolyte-based ultracapacitor.
高浓硫酸条件下玻璃棉分离器超级电容器充放电循环性能研究
用玻璃棉分离器对不同浓度硫酸(H2SO4)水溶液下超级电容器的充放电循环性能进行了评价。在1 mol/dm3 H2SO4的低浓度电解液条件下,与常规纤维素分离器的性能进行了比较。将两个活性炭电极夹在每一种含电解质的分离材料上,构建了双电极超级电容器。可循环性测试在恒充放电电流为10 mA的情况下进行,最多可进行300次循环。在循环性能试验之前,根据循环伏安法和恒流试验对所构建的超级电容器进行了评价。基于玻璃羊毛的电容器在其比电容和内阻方面的性能与传统的基于纤维素的电容器相当,可达300次循环。有趣的是,在浓度更高的H2SO4为18 mol/dm3的电解液中,玻璃羊毛基超级电容器的比电容比1 mol/dm3的H2SO4电解液大40%。设想通过应用玻璃棉作为隔膜偶联,与高浓度的水溶液电解质相比,可以以相对较低的成本获得更高额定值的超级电容器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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