{"title":"Single-ion conductivity in comblike polymers","authors":"E. Rietman, M. Kaplan","doi":"10.1002/POL.1990.140280601","DOIUrl":null,"url":null,"abstract":"We have prepared comblike polymers based on styrene-maleic anhydride and ethylene-maleic anhydride copolymer backbones. Reactions have been carried out in which the cyclic anhydrides were ring opened with the concomitant formation of ester groups on one of the carbonyl functions. The remaining carbonyl group is part of a carboxylic acid. The alcohol moieties are either the monomethyl ethers of triethylene glycol or of polyethylene glycol (MW 350). The resulting polymers were then converted to their lithium salts. \n \n \n \nComplex impedance plane measurements of the ionic conductivity in these lithiated polymers have been performed. Cole–Cole plots indicate that there is no electronic contribution to the overall conductivity. The ionic conductivity in the case of the triethylene glycol comb polymer is about 10−9 S cm−1, whereas that of the polymer with the longer ethylene oxide chain is 10−7 S cm−1 at room temperature. From the chemical nature of these polymers, it is presumed that all the conductivity is due to the mobility of the Li ion. These data will be compared to the results other laboratories have had with different single-ion conducting polymers.","PeriodicalId":16874,"journal":{"name":"Journal of Polymer Science: Polymer Letters Edition","volume":"10 1","pages":"187-191"},"PeriodicalIF":0.0000,"publicationDate":"1990-05-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"19","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Polymer Science: Polymer Letters Edition","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1002/POL.1990.140280601","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 19
Abstract
We have prepared comblike polymers based on styrene-maleic anhydride and ethylene-maleic anhydride copolymer backbones. Reactions have been carried out in which the cyclic anhydrides were ring opened with the concomitant formation of ester groups on one of the carbonyl functions. The remaining carbonyl group is part of a carboxylic acid. The alcohol moieties are either the monomethyl ethers of triethylene glycol or of polyethylene glycol (MW 350). The resulting polymers were then converted to their lithium salts.
Complex impedance plane measurements of the ionic conductivity in these lithiated polymers have been performed. Cole–Cole plots indicate that there is no electronic contribution to the overall conductivity. The ionic conductivity in the case of the triethylene glycol comb polymer is about 10−9 S cm−1, whereas that of the polymer with the longer ethylene oxide chain is 10−7 S cm−1 at room temperature. From the chemical nature of these polymers, it is presumed that all the conductivity is due to the mobility of the Li ion. These data will be compared to the results other laboratories have had with different single-ion conducting polymers.
我们制备了以苯乙烯-马来酸酐和乙烯-马来酸酐共聚物为骨架的梳状聚合物。在一些反应中,环酸酐被开环,同时在其中一个羰基官能团上形成酯基。剩下的羰基是羧酸的一部分。醇部分是三甘醇的单甲基醚或聚乙二醇(mw350)。然后将得到的聚合物转化为锂盐。对这些锂化聚合物的离子电导率进行了复杂的阻抗平面测量。Cole-Cole图表明,电子对总体电导率没有贡献。在室温下,三甘醇梳状聚合物的离子电导率约为10−9 S cm−1,而环氧乙烷链较长的聚合物的离子电导率为10−7 S cm−1。从这些聚合物的化学性质来看,可以推测所有的导电性都是由于锂离子的迁移性。这些数据将与其他实验室用不同的单离子导电聚合物得到的结果进行比较。