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Conductivity and discharge characteristics of polyblend (PVP + PVA + KIO_3) electrolyte

机译:聚合物(PVP + PVA + KIO_3)电解质的电导率和放电特性

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摘要

Films of an ion conducting, polyblend electrolyte based on (polyvinyl pyrrolidone (PVP) + polyvinyl alcohol (PVA)) complexed with KIO_3 are prepared by a solution-cast technique. Measurements of dc conductivity and transference number are made to investigate the order of conductivity and the charge transport in this polyblend electrolyte. Transference number values show that the charge transport in this electrolyte is predominantly due to ions (t_(ion) = 0.97). The magnitude of conductivity increases with increase in the concentration of the salt and temperature. Using this electrolyte, electrochemical cells are fabricated and their discharge characteristics are studied under different loads. The results show that KIO_3 polyblend electrolytes offer interesting alternatives to other solid-state battery systems. The electrochemical decomposition potential (ECDP) is determined for the polyblend electrolyte. From the ECDP studies, the values of open-circuit voltage (OCV) are calculated and are in good agreement with those obtained from discharge studies.
机译:通过溶液浇铸技术制备了一种基于(聚乙烯吡咯烷酮(PVP)+聚乙烯醇(PVA))与KIO_3络合的离子导电性混合电解质薄膜。进行直流电导率和转移数的测量,以研究该混合电解质中电导率的顺序和电荷传输。迁移数值表明,该电解质中的电荷传输主要归因于离子(t_(ion)= 0.97)。电导的幅度随着盐浓度和温度的增加而增加。使用这种电解质,可以制造电化学电池并研究其在不同负载下的放电特性。结果表明,KIO_3混合电解质是其他固态电池系统的有趣替代品。确定了混合电解质的电化学分解电位(ECDP)。根据ECDP研究,可以计算出开路电压(OCV)的值,并且与通过放电研究获得的值非常一致。

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