首页> 外文期刊>Electrochimica Acta >Study of ageing effects in polymer-in-salt electrolytes based on poly (acrylonitrile-co-butyl acrylate) and lithium salts
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Study of ageing effects in polymer-in-salt electrolytes based on poly (acrylonitrile-co-butyl acrylate) and lithium salts

机译:基于聚(丙烯腈-丙烯酸丁酯)和锂盐的盐分聚合物电解质的老化效应研究

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Polymer electrolytes composed of an acrylonitrile and butyl acrylate copolymer poly(AN-co-BuA) with addition of LiN(CF3SO2)(2) (LiTFSI) or LiI and LiTFSI salt mixture are studied by impedance spectroscopy, DSC, Raman spectroscopy, X-ray diffraction, SEM and TEM. Impedance study shows that the ionic conductivity of the electrolytes containing LiTFSI is strongly dependent on the salt content and transition from "salt-in-polymer" to "polymer-in-salt" regime is observed at high salt content. Gradual changes of physical properties of the studied polymer electrolytes are observed in the course of their prolonged storage under argon atmosphere. These include the increase of glass transition temperature and decrease of ionic conductivity. In order to study the effects of this ageing process, measurements on samples of electrolyte films were repeated after several months. Precipitation of salt, which occurred at the nanometer length scale is observed with the aid of electron microscopy in electrolytes containing more than 84 wt.% of salt. Crystalline salt is not observed in electrolytes with lower amount of salt - however, the results indicate the structural changes of salt aggregates, which strongly influence transport of ions through the electrolyte. For preparation of electrolytes with mixed LiTFSI and LiI salts, a mixture of salts (16 wt.% LiI, 84 wt.% LiTFSI) is used, which exhibits the lowest melting temperature. The electrolyte comprising poly(AN-co-BuA) and 65 wt.% of the salt mixture exhibits high ionic conductivity and turns out to be more stable than electrolytes comprising only LiTFSI salt. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过阻抗光谱,DSC,拉曼光谱,X-光谱研究了由丙烯腈和丙烯酸丁酯共聚物聚(AN-co-BuA)加LiN(CF3SO2)(2)(LiTFSI)或LiI和LiTFSI盐混合物组成的聚合物电解质射线衍射,SEM和TEM。阻抗研究表明,含LiTFSI的电解质的离子电导率强烈依赖于盐含量,在高盐含量下观察到从“盐中聚合物”到“盐中聚合物”的转变。在氩气下长时间储存​​的过程中,观察到了所研究的聚合物电解质的物理性能逐渐变化。这些包括玻璃化转变温度的升高和离子电导率的降低。为了研究这种老化过程的影响,几个月后重复了对电解质膜样品的测量。借助于电子显微镜,在盐含量大于84重量%的电解质中观察到了在纳米长度尺度上发生的盐的沉淀。在盐含量较低的电解质中未观察到结晶盐-但是,结果表明盐聚集体的结构变化会严重影响离子通过电解质的传输。为了制备具有混合的LiTFSI和LiI盐的电解质,使用盐的混合物(16重量%的LiI,84重量%的LiTFSI),其表现出最低的熔融温度。包含聚(AN-co-BuA)和65重量%的盐混合物的电解质表现出高离子电导率,并且比仅包含LiTFSI盐的电解质更稳定。 (C)2015 Elsevier Ltd.保留所有权利。

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