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超支化聚氨酯固体电解质导电性能的光谱学研究
引用本文:洪玲,唐小真,王新灵.超支化聚氨酯固体电解质导电性能的光谱学研究[J].高分子学报,2002(6):775-779.
作者姓名:洪玲  唐小真  王新灵
作者单位:上海交通大学化学化工学院,上海,200240
摘    要:用超支化聚氨酯 +线性聚氨酯作为基体 ,LiClO4作为离子源制得聚合物固体电解质 .用Raman光谱 ,FTIR光谱等光谱学方法研究了聚合物电解质中盐离子和聚合物基团之间的相互作用 .研究表明超支化聚氨酯对盐有较好的溶解作用 .研究还表明超支化聚氨酯加入有利于提高体系的电导率

关 键 词:超支化  离子导电  聚氨酯  红外光谱  Raman光谱
修稿时间:2002年1月8日

SPECTROSCOPIC STUDIES ON CONDUCTIVITY OF HYPERBRANCHED POLYURETHANE ELECTROLYTES
HONG Ling,TANG Xiaozhen,WANG Xinling.SPECTROSCOPIC STUDIES ON CONDUCTIVITY OF HYPERBRANCHED POLYURETHANE ELECTROLYTES[J].Acta Polymerica Sinica,2002(6):775-779.
Authors:HONG Ling  TANG Xiaozhen  WANG Xinling
Abstract:Polymer electrolytes were prepared with hyperbranched polyurethane and linear polyurethane as the host polymer and LiClO 4 as the ion source.FTIR spectra was used to analyze the bonding degree of Li++ with carbonyl and ether groups.It was found that Li + preferred bonding with the ether group,and bonded with the carbonyl group when the salt concentration reached a certain level.The bonding degree of Li + with ether groups and the carbonyl groups both reached a saturated state at a salt concentration of EO/Li +=4.Raman spectra was applied to analyze the aggregation degree of anions ClO - 4 .The fraction of contact-ion pairs increased with increasing salt concentration.When the salt concentration increased to EO/Li +=4,the salt aggregates appeared,but the area fraction of aggregates was merely 1.2%.This indicated that the hyperbranched polyurethane could function as a "solvent" for the lithium salt.Conductivity analysis indicated that the conductivity kept increasing with increasing concentration of HPU and the conductivity maximum of the present system appeared at a higher salt concentration (EO/Li +=4) which could be attributed to the high solvating capability of the hyperbranched polymer.The ionic conductivity of all samples was apparently enhanced with increasing temperature, and the Arrhenius phenomenological relationship could be used to describe the conductivity behavior.
Keywords:Hyperbranched  Ionic conductivity  Polyurethane  FTIR spectra  Raman  
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