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Role of ionic liquid [BMIMPF6] in modifying the crystallization kinetics behavior of the polymer electrolyte PEO-LiClO4

机译:离子液体[BMIMPF6]在改变聚合物电解质PEO-LiClO4的结晶动力学行为中的作用

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We report on the modification in crystallization kinetics behavior of PEO + 10 wt% LiClO4 polymer electrolyte by the addition of an ionic liquid 1-butyl-3-methylimidazolium hexafluorophosphate (BMIMPF6). Three techniques have been used for studying crystallization kinetics, viz., (i) isothermal crystallization technique using DSC, (ii) non-isothermal crystallization technique using DSC, and (iii) by monitoring the growth of spherulites with time in the polymer electrolyte films using a polarizing optical microscope (POM). Results from all the three techniques show that the presence of ionic liquid BMIMPF6 suppresses the crystallization rate due to its plasticization effect. Isothermal crystallization data was well described by the Avrami equation, and Avrami exponent n lies in the range of 1 to 2, which signifies 2D crystal growth geometry occurring in these polymer electrolytes under the investigated temperature range. However, the Avrami crystallization rate constant 'K' increases exponentially with crystallization temperature and ionic liquid content as well. However, the non-isothermal crystallization kinetics of these polymer electrolytes is discussed in terms of three different models (Jeziorny's, Ozawa's and Mo's method), and it is found that Mo's method better explains the non-isothermal crystallization data. In addition, crystalline morphology and spherulite growth were studied by POM, which shows the suppression in crystallization in the presence of ionic liquid, as confirmed by spherulite growth rate (G(s)) analysis.
机译:我们通过添加离子液体1-丁基-3-甲基咪唑六氟磷酸盐(BMIMPF6)报告了PEO + 10 wt%LiClO4聚合物电解质的结晶动力学行为的改变。已经使用三种技术来研究结晶动力学,即,(i)使用DSC的等温结晶技术,(ii)使用DSC的非等温结晶技术,以及(iii)通过监测聚合物电解质膜中球晶随时间的生长使用偏光光学显微镜(POM)。所有这三种技术的结果表明,离子液体BMIMPF6的存在由于其增塑作用而抑制了结晶速率。等温结晶数据已由Avrami方程很好地描述,Avrami指数n处于1到2的范围内,这表示在研究的温度范围内,这些聚合物电解质中均发生了二维晶体生长。但是,Avrami结晶速率常数“ K”随结晶温度和离子液体含量的增加而指数增加。然而,这些聚合物电解质的非等温结晶动力学是根据三种不同的模型(Jeziorny's,Ozawa's和Mo's方法)讨论的,并且发现Mo's方法可以更好地解释非等温结晶数据。另外,通过POM研究了晶体形态和球晶的生长,这通过球晶生长速率(G(s))分析证实了显示在离子液体存在下结晶的抑制。

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