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以二(三氟甲基磺酰)亚胺锂为基底的室温熔融盐电解质热学及电化学性质的比较研究
引用本文:梁宏莹,吴锋,陈立泉,黄学杰.以二(三氟甲基磺酰)亚胺锂为基底的室温熔融盐电解质热学及电化学性质的比较研究[J].高等学校化学学报,2003,24(2):305-309.
作者姓名:梁宏莹  吴锋  陈立泉  黄学杰
作者单位:1. 北京理工大学化工与材料学院, 北京 100081; 2. 中国科学院物理研究所固态离子学实验室, 北京 100080
基金项目:国家科技部基础研究重大项目前期研究项目 (批准号 :2 0 0 1CCA0 5 0 0 0 )资助
摘    要:制备了一系列二(三氟甲基磺酰)亚胺锂LiN(SO2CF3)2,LiTFSI]与尿素及其衍生物形成的新型室温熔融盐电解质,并对其热学性质及电导率进行了比较研究.受甲基取代基的影响,LiTFSI-甲基脲体系的共熔温度最低,为-38℃.LiTFSI-尿素体系的室温电导率最高,为1.74×10-4S/cm,50℃电导率为1.24×10-3S/cm.

关 键 词:室温熔融盐电解质  热学性质  离子电导率  二(三氟甲基磺酰)亚胺锂  尿素  甲基脲  
文章编号:0251-0790(2003)02-0305-05
收稿时间:2002-03-26

Comparative Studies on Thermal and Electrochemical Properties of Room-temperature Molten Salt Electrolytes Based on LiTFSI with Urea and Its Derivatives
LIANG Hong-Ying ,WU Feng ,CHEN Li-Quan ,HUANG Xue-Jie.Comparative Studies on Thermal and Electrochemical Properties of Room-temperature Molten Salt Electrolytes Based on LiTFSI with Urea and Its Derivatives[J].Chemical Research In Chinese Universities,2003,24(2):305-309.
Authors:LIANG Hong-Ying    WU Feng  CHEN Li-Quan  HUANG Xue-Jie
Institution:1. School of Chemical Engineering and Materials Science, Beijing Institute of Technology, Beijing 100081, China; 2. Lab for Solid State Ionics, Institute of Physics, Chinese Academy of Sciences, Beijing 100081, China
Abstract:Thermal and electrochemical properties of new room-temperature molten salt electrolytes based on LiTFSI with urea and its derivatives have been studied. These electrolytes appear as liquid at room temperature though they are composed of two solids. DSC analysis shows that the eutectic temperature of LiTFSI and methylurea is about-38 ℃, lower than those of LiTFSI-urea and LiTFSI-1,3-dimethylurea. The conduction behavior of these electrolytes has been evaluated by AC impedance spectroscopy. With increasing numbers of methyl of urea, the conductivities of these room-temperature molten salt electrolytes decrease accordingly. The conductivity of LiTFSI/urea eutectic compound is 1.74×10-4 S/cm at 25 ℃ and 1.24×10-3 S/cm at 50 ℃.
Keywords:Room-temperature molten salt electrolyte  Thermal properties  Ionic conductivity  LiTFSI  Urea  Methylurea
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