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Electrical and mechanical properties of poly(ethylene oxide)/intercalated clay polymer electrolyte

机译:聚环氧乙烷/插层粘土聚合物电解质的电气和机械性能

摘要

Solvent-free solid polymer electrolytes (SPEs) based on two different poly(ethylene oxide), PEO Mw 600,000 and 4,000,000 and intercalated clays are reported. The inorganic additives used were lithiated bentonite and the nanocomposite PEO@bentonite with the same polymer used as matrix. SPE films, obtained in the scale of grams by mixing the components in a Brabender-type batch mixer and molding at 130 C, were characterized by X-ray diffraction analysis, UV-vis spectroscopy, and thermal analysis. During the preparation of the films, the unmodified clay got intercalated in situ. Comparative analysis of ionic conductivity and mechanical properties of the films show that the conductivity increases with the inclusion of fillers, especially for the polymer with low molecular weight. This effect is more pronounced when using PEO@bentonite as additive. Under selected work conditions, avoiding the presence of crystalline lithium complexes, observed effects are mainly centered on the polymer. An explanation, considering the higher affinity between the modified clay and PEO matrix which leads to differences in the micro homogeneity degree between both types of polymer electrolytes is proposed. © 2011 Elsevier Ltd. All rights reserved.
机译:据报道,基于两种不同的聚环氧乙烷PEO Mw 600,000和4,000,000的无溶剂固体聚合物电解质(SPE)和插层粘土。所用的无机添加剂是锂化膨润土和具有相同聚合物的纳米复合PEO @膨润土。通过X射线衍射分析,紫外可见光谱和热分析对通过在Brabender型批量混合器中混合各组分并在130°C下成型而获得的克级SPE膜进行表征。在膜的制备过程中,未改性的粘土被原位插入。薄膜的离子电导率和机械性能的比较分析表明,电导率随填料的加入而增加,特别是对于低分子量的聚合物。当使用PEO @膨润土作为添加剂时,这种效果更加明显。在选定的工作条件下,避免出现晶体锂络合物,观察到的影响主要集中在聚合物上。考虑到改性粘土和PEO基体之间较高的亲和力,导致两种类型的聚合物电解质之间的微观均匀度不同,提出了一种解释。 ©2011 Elsevier Ltd.保留所有权利。

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