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Phase transitions in polymers for lithium batteries

机译:锂电池聚合物中的相变

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The Young's modulus and the elastic energy dissipation of polyethylene oxide (PEO)-based lithium battery electrolyte membranes have been studied in this work. The membranes, formed by pure PEO and doped by LiCF _3SO _3, Li _2S and ZrO _2, were studied within a 90 K - 400 K temperature range. We observed the glass transition around 230 K and the first-order phase transformation from the crystalline to the amorphous phase around 330 K on heating. We also measured the isothermal kinetics of the transition from the amorphous to the crystalline state and found that it is slower in doped PEO. Moreover, we showed that for both samples the transformation becomes slower as the temperature increases between 319 and 331 K. The experimental results suggest that the amorphous state is stable at 331 K for a few hours before the transformation takes place. Finally, the moisture effects on the mechanical properties of pure and doped PEO membranes are reported.
机译:在这项工作中,已经研究了基于聚环氧乙烷(PEO)的锂电池电解质膜的杨氏模量和弹性能耗散。在90 K-400 K的温度范围内研究了由纯PEO形成并掺杂有LiCF _3SO _3,Li _2S和ZrO _2的膜。我们观察到230 K附近的玻璃化转变和330 K附近加热时从晶相到非晶相的一阶相变。我们还测量了从非晶态到结晶态转变的等温动力学,发现在掺杂的PEO中它变慢了。此外,我们表明,对于这两个样品,随着温度在319和331 K之间的升高,转变速度变慢。实验结果表明,在转变发生前,非晶态在331 K下稳定了几个小时。最后,报告了水分对纯净和掺杂PEO膜机械性能的影响。

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