基于水电解质的超级电容器膜材料的比较与选择

O. Kaupbai, K. Maldybayev, T. Kan, M. Kiyatova, S. Kokhmetova, A. Kurbatov, F. Malchik
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引用次数: 0

摘要

膜/分离器是超级电容器、电池等电化学储能装置的重要组成部分。然而,对于超级电容器来说,限制充放电速率能力的传输过程更为明显,与电池不同,超级电容器可以在几秒钟内充电;因此,需要对膜的材料和孔隙度进行更详细的选择。本文介绍了一种用循环伏安法估计附加膜电阻贡献的方法。通过对4种膜的对比分析:纤维素基隔膜TF4050和VL100 (Nippon Kodoshi Corporation, Japan);滤纸-蓝带“OOO Melior XXI”(滤纸);基于聚偏氟乙烯(PVdF)的过滤器(Durapore®膜过滤器)经测定,PVdF膜在LiCl浓溶液中附加阻力最小,而在NaClO4浓溶液中附加阻力最小,为TF4050。总的来说,对于初步的电化学研究,在一定条件下使用非特化膜的可能性已经被证明。
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COMPARISON AND SELECTION OF MEMBRANE MATERIAL FOR SUPERCAPACITORS BASED ON AQUEOUS ELECTROLYTES
The membrane/separator is an important part of electrochemical energy storage devices such as supercapacitors and batteries. However, the transport processes that limit the rate capability of the charge/discharge are more pronounced for supercapacitors, which can be charged in seconds, unlike batteries; therefore, a more detailed selection of the material and porosity of the membranes is required for them. The paper shows a method for estimation of the contribution of additional membrane resistance by the cyclic voltammetry. As a result of a comparative analysis of 4 membranes: cellulose based separator TF4050 and VL100 (Nippon Kodoshi Corporation, Japan); filter paper - blue ribbon "OOO Melior XXI" (filter); filter based on polyvinylidene fluoride (PVdF) (Durapore® Membrane Filter) it was determined that the membrane based on PVdF has the least additional resistance in a concentrated solution of LiCl, while in concentrated solution of NaClO4 the least additional resistance has TF4050. In general, for preliminary electrochemical studies, the possibility of using not specialized membranes under certain conditions has been shown.
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