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Novel lithium salts exhibiting high lithium ion transference numbers in polymer electrolytes

机译:新型锂盐在聚合物电解质中表现出高锂离子转移数

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A variety of lithium aluminates containing two oligoether groups and two electron-withdrawing groups, CF_3CO_2, CF_3SO_3, (CF_3SO_2)_2N or C_6F_5O, on aluminum atom were prepared. Viscous liquid salts were obtained by incorporation of oligoether substituents containing an average of 7.2 and 11.8 ethylene oxide repeating units. Ionic conductivity of the liquid salt was enhanced by incorporation of electron withdrawing groups on the aluminate center and was dependent on the chain length of oligoether groups. Temperature dependence of ionic conductivity was well fitted to Vogel-Tammann-Fulcher equation, indicating that ion motion was coupled to segmental motion of oligoether chains. Polymer electrolytes were prepared by mixing of the salt and poly(ethylene oxide) and exhibited a high ionic conductivity, a high lithium transference number, a wide potential window, and a good thermal stability.
机译:制备了在铝原子上包含两个低醚基和两个吸电子基团CF_3CO_2,CF_3SO_3,(CF_3SO_2)_2N或C_6F_5O的各种铝酸锂。通过掺入平均含7.2和11.8个环氧乙烷重复单元的低聚醚取代基获得粘性液体盐。通过在铝酸盐中心引入吸电子基团可以提高液态盐的离子电导率,并且取决于寡聚醚基团的链长。离子电导率的温度依赖性非常符合Vogel-Tammann-Fulcher方程,表明离子运动与寡醚链的分段运动耦合。通过将盐和聚(环氧乙烷)混合制备聚合物电解质,其表现出高离子电导率,高锂转移数,宽的电势窗和良好的热稳定性。

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