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Carboxymethyl cellulose-based polyelectrolyte as cationic exchange membrane for zinc-iodine batteries

机译:基于羧甲基纤维素的聚电解质作为锌 - 碘电池的阳离子交换膜

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摘要

The aim of this research is an evaluation of polyelectrolytes. In the application of zinc-iodine batteries (ZIBs), polyelectrolytes have high stability, good cationic exchange properties and high ionic conductivity. Polyelectrolytes are also cost-effective. Important component of ZIBs are cation exchange membranes (CEMs). CEMs prevent the crossover of iodine and polyiodide from zinc (Zn) electrodes. However, available CEMs are costly and have limited ionic conductivity at room temperature. CEMs are low-cost, have high stability and good cationic exchange properties. Herein, polyelectrolyte membranes prepared from carboxymethyl cellulose (CMC) and polyvinyl alcohol (PVA) are examined. It is seen that an increase in the ratio of PVA leads to enhanced ionic conductivity as well as increased iodine and polyiodide crossover. ZIBs using polyelectrolytes having 75:25 wt.% CMC/PVA and 50:50 wt.% CMC/PVA show decent performance and cycling stability. Due to their low-cost and other salient features, CMC/PVA polyelectrolytes prove they have the capacity for use as cation exchange separators in ZIBs.
机译:该研究的目的是对聚电解质的评估。在锌 - 碘电池(ZiBs)的应用中,聚电解质具有高稳定性,良好的阳离子交换特性和高离子电导率。聚电解质也具有成本效益。 Zibs的重要组成部分是阳离子交换膜(CEM)。 CEMS防止来自锌(Zn)电极的碘和聚碘公司的交叉。然而,可用的CEMS昂贵并且在室温下具有有限的离子电导率。 CEMS是低成本,具有高稳定性和良好的阳离子交换特性。这里,检查由羧甲基纤维素(CMC)和聚乙烯醇(PVA)制备的聚电解质膜。可以看出,PVA的比例的增加导致增强的离子导电性以及增加的碘和聚碘交叉。使用具有75:25重量%的聚电解质的ZiB。%CMC / PVA和50:50重量%。%CMC / PVA显示出体面的性能和循环稳定性。由于它们的低成本和其他显着特征,CMC / PVA聚电解质证明它们具有用作ZIBS中的阳离子交换分离器的能力。

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