哈尔滨工业大学学报(英文版)
哈爾濱工業大學學報(英文版)
합이빈공업대학학보(영문판)
JOURNAL OF HARBIN INSTITUTE OF TECHNOLOGY(NEW SERIES)
2011年
5期
44-48
,共5页
崔闻宇%安茂忠%杨培霞%张锦秋%孙兴斌
崔聞宇%安茂忠%楊培霞%張錦鞦%孫興斌
최문우%안무충%양배하%장금추%손흥빈
room temperature ionic liquid%lithium batteries%vinylene carbonate%solid electrolyte interphase film
Ionic liquids have been paid much attention and are considered to replace the conventional organic electrolyte and solve the safety issues by virtue of nonvolatility,non-flammability,high ionic conductivity and extended electrochemical steady window.The paper introduces ionic liquids electrolyte on basis of 1-ethyl-3-methylimidazolium bis(trifluoromethanesulfonyl)imide(EMITFSI),which shows a wide electrochemical window(0.5-4.5 V vs.Li +/Li),and is theoretically feasible as an electrolyte for Li/LiFePO4 batteries to improve the safety.Linear sweep voltammetry(LSV)was performed to investigate the electrochemical stability window of the polymer electrolyte.Interfacial resistance for Li/electrolyte/Li symmetric cells and Li/electrolyte/LiFePO4 cells were studied by electrochemical impedance spectroscopy(EIS).The results showed that additive vinylene carbonate(VC)enhances the formation of solid electrolyte interphase film to protect lithium anodes from corrosion and improves the compatibility of ionic liquid electrolyte towards lithium anodes.Accordingly,Li/LiFePO4cells delivers the initial discharge capacity of 124 mAh g-1 at a current rate of 0.1C in the ionic liquid electrolyte(EMITFSI + 0.8 mol L-1 LiTFSI + 5 wt% VC),and shows better cyclability than in the ionic liquid electrolyte without VC.