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A study on open circuit voltage reduction as a main drawback of Zn-polyaniline rechargeable batteries

机译:锌-聚苯胺可充电电池主要缺点的开路降压研究

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摘要

The factors influencing the reduced open circuit voltage (OCV) of a Zn-polyaniline (PANI) rechargeable battery were investigated. The reduced OCV of battery at various number of charge/discharge cycles was measured and its relevance to the zinc anode and polymeric cathode was investigated. The results revealed that the battery OCV is reduced with the number of charge/discharge cycles. The composition of cathode surface and nature of electrolyte solution were evaluated by using scanning electron microscope (SEM) and spectrofluorimetric measurements, respectively. The decreased OCV was found cause by the cathode electrode. Although the SEM analysis showed that some zinc particles are adsorbed on the polymeric cathode electrode, this factor was not a major factor contribution to the OCV reduction. The spectrofluorimetric analysis of electrolyte solution revealed its increased hydroquinone (HQ) content with increasing charge/discharge cycles, as a result of the electrochemical degradation of the charged polyaniline. Consequently, the OCV of Zn-PANI rechargeable battery is reduced by chemical redox reaction of charged PANI with HQ.
机译:研究了影响锌聚苯胺(PANI)可再充电电池的开路电压(OCV)降低的因素。测量了在各种充电/放电循环次数下电池的OCV降低,并研究了其与锌阳极和聚合物阴极的相关性。结果表明,电池OCV随着充电/放电循环次数的减少而降低。通过使用扫描电子显微镜(SEM)和荧光分光光度法分别评估阴极表面的组成和电解质溶液的性质。发现OCV降低是由阴极引起的。尽管SEM分析表明一些锌颗粒被吸附在聚合物阴极电极上,但是该因素并不是导致OCV降低的主要因素。电解质溶液的光谱荧光分析表明,由于带电聚苯胺的电化学降解,其对苯二酚(HQ)含量随充电/放电循环的增加而增加。因此,通过充电的PANI与HQ的化学氧化还原反应可降低Zn-PANI可再充电电池的OCV。

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