Synthesis and ionic conductivity studies of solid polymer electrolytes based on modified alternating maleic anhydride copolymer with oligo(oxyethylene) side chains

Liming Ding, Jing Shi, Dezhu Ma, Shaojun Dong
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引用次数: 2

Abstract

Comb-like polymers (CP) based on modified alternating methyl vinyl ether/maleic anhydride copolymer with oligo-oxyethylene side chains of the type O(CH2CH2O)nCH3 have been synthesized and characterized, and complexed with LiNO3 to form an amorphous polymer electrolyte. CP/salt complexes showed conductivity up to 10−5 S/cm at room temperature. The temperature dependence of ionic conductivity suggests that the ion transport is controlled by segmental motion of the polymer, shown by linear curves obtained in Vogel–Trammann–Fulcher plots. The ionic conductivity maximum moves to a higher salt concentration as the temperature increases. IR results also indicate that the ester in CP might decompose at 140°C and reproduce the maleic anhydride ring.

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低氧乙烯侧链改性交替马来酸酐共聚物固体聚合物电解质的合成及离子电导率研究
摘要合成了具有侧链为低氧乙烯基的改性甲基乙烯醚/马来酸酐交替共聚物的梳状聚合物(CP),并对其进行了表征,并与LiNO3络合形成非晶聚合物电解质。CP/盐配合物在室温下的电导率高达10−5 S/cm。离子电导率的温度依赖性表明,离子传输是由聚合物的节段运动控制的,在Vogel-Trammann-Fulcher图中得到线性曲线。随着温度的升高,离子电导率最大地向较高的盐浓度移动。红外光谱结果还表明,CP中的酯在140℃时可能发生分解,生成马来酸酐环。
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