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Effect of Chemical Structure and Salt Concentration on the Crystallization and Ionic Conductivity of Aliphatic Polyethers

机译:化学结构和盐浓度对脂肪族聚醚的结晶和离子电导率的影响

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摘要

Poly(ethylene oxide) (PEO) is the most widely used polymer in the field of solid polymer electrolytes for batteries. It is well known that the crystallinity of polymer electrolytes strongly affects the ionic conductivity and its electrochemical performance. Nowadays, alternatives to PEO are actively researched in the battery community, showing higher ionic conductivity, electrochemical window, or working temperature range. In this work, we investigated polymer electrolytes based on aliphatic polyethers with a number of methylene units ranging from 2 to 12. Thus, the effect of the lithium bis(trifluoromethanesulfone) imide (LiTFSI) concentration on the crystallization behavior of the new aliphatic polyethers and their ionic conductivity was investigated. In all the cases, the degree of crystallinity and the overall crystallization rate of the polymers decreased drastically with 30 wt % LiTFSI addition. The salt acted as a low molecular diluent to the polyethers according to the expectation of the Flory–Huggins theory for polymer–diluent mixtures. By fitting our results to this theory, the value of the interaction energy density (B) between the polyether and the LiTFSI was calculated, and we show that the value of B must be small to obtain high ionic conductivity electrolytes.
机译:聚环氧乙烷(PEO)是用于电池的固体聚合物电解质领域中使用最广泛的聚合物。众所周知,聚合物电解质的结晶度强烈影响离子电导率及其电化学性能。如今,在电池领域正在积极研究PEO的替代品,它们显示出更高的离子电导率,电化学窗口或工作温度范围。在这项工作中,我们研究了基于脂肪族聚醚的聚合物电解质,其中亚甲基单元的数目为2到12。因此,双(三氟甲砜)酰亚胺锂(LiTFSI)的浓度对新型脂肪族聚醚的结晶行为和研究了它们的离子电导率。在所有情况下,当添加30wt%的LiTFSI时,聚合物的结晶度和总结晶速率急剧降低。根据弗洛里-哈金斯理论对聚合物-稀释剂混合物的预期,该盐可作为聚醚的低分子稀释剂。通过使我们的结果适合该理论,计算了聚醚和LiTFSI之间的相互作用能密度(B)的值,并且我们证明B的值必须小才能获得高离子电导率的电解质。

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