含甲基磺酰亚胺锂端基的聚乙二醇无氟单组分聚电解质:结构差异对离子电导率的影响

Bungo Ochiai, Koki Hirabayashi, Yudai Fujii, Yoshimasa Matsumura
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引用次数: 0

摘要

通过将甲磺酰亚胺锂(LiMSSI)分子与具有不同形态的聚乙二醇(PEG)衍生物杂化,开发出了无氟单组分聚电解质,并研究了其结构与离子电导率之间的关系。通过 PEG 和 N-甲磺酰乙烯基磺酰亚胺的迈克尔型加成和石碳酸化反应,制备了具有一个、两个和三个 LiMSSI 端基的 PEG-LiMSSI 衍生物。60 °C 时的离子电导率为 1.8 × 10-7 至 2.0 × 10-4 S/cm。具有一个 LiMSSI 端部和两端具有两个 LiMSSI 端部的 PEG-LiMSSI 衍生物比一端具有两个 LiMSSI 端部和具有三个 LiMSSI 端部的 PEG-LiMSSI 衍生物具有更高的离子电导率,与无氟单组分聚电解质的离子电导率相当。
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Fluorine-Free Single-Component Polyelectrolyte of Poly(ethylene glycol) Bearing Lithium Methanesulfonylsulfonimide Terminal Groups: Effect of Structural Variance on Ionic Conductivity
Fluorine-free single-component polyelectrolytes were developed via the hybridization of lithium methanesulfonylsulfonimide (LiMSSI) moieties to poly(ethylene glycol) (PEG) derivatives with different morphologies, and the relationship between the structure and its ionic conductivity was investigated. The PEG-LiMSSI derivatives with one, two, and three LiMSSI end groups were prepared via the concomitant Michael-type addition and lithiation of PEGs and N-methanesulfonylvinylsulfonimide. The ionic conductivity at 60 °C ranged from 1.8 × 10−7 to 2.0 × 10−4 S/cm. PEG-LiMSSI derivatives with one LiMSSI terminus and with two LiMSSI termini at both ends show higher ionic conductivity, that is as good as fluorine-free single-component polyelectrolytes, than that with two LiMSSI termini at one end and that with three LiMSSI termini.
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