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Preparation and evaluation of two kinds of solid polymer electrolytes made from crosslinked poly(ether urethane) elastomers consisting of a comb‐like and a hyperbranched polyether
Authors:Lin Ye  Peng Gao  Yu‐mei Zhao  Zeng‐guo Feng  Ying Bai  Feng Wu
Affiliation:1. School of Materials Science and Engineering, Beijing Institute of Technology, Beijing 100081, China;2. School of Chemical Engineering and Environment, Beijing Institute of Technology, Beijing 100081, China;3. Laboratory of National Development Center of Hi‐Tech Green Materials, Beijing 100081, China
Abstract:Two novel polyethers, one comb‐like and another hyperbranched, were synthesized by the cationic ring‐opening polymerization of 3‐(methoxy(triethylenoxy))methyl‐ and 3‐(hydroxy‐(triethylenoxy))methyl‐3′‐methyloxetane, respectively. The former reacted with a multifunctional isocyanate and the latter with a difunctional isocyanate to give rise to the corresponding crosslinked poly(ether urethane) elastomers, PCEU and PHEU. Accordingly, two kinds of solid polymer electrolytes (SPEs) were prepared from these two elastomers in situ in the presence of lithium salt trifluoromethanesulfonimide. It was found that the PCEU‐based SPEs shows a higher ionic conductivity than that PHEU‐based ones due to its more mobile pendent chains and appropriate crosslinking density in the polymeric network. The maximum ionic conductivities of 1.4 × 10?5 S/cm at 30°C and 3.5 × 10?4 S/cm at 80°C were attained at the molar ratio of O/Li = 7.5. The DSC measurements clearly demonstrated that PCEU indeed possesses the more flexible chain motion ability than PHEU. The electrochemical stability window of PCEU, which is 1.7–4.0 V was measured by cyclic voltammogram. Additionally, the significantly high decomposition temperature as evidenced by TGA analyses endowed these SPEs a good safe performance. © 2008 Wiley Periodicals, Inc. J Appl Polym Sci, 2008
Keywords:comb‐like polyether  hyperbranched polyether  crosslinked poly(ether urethane) elastomer  solid polymer electrolyte  ionic conductivity
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