摘要
选择了一种具有良好贮锂结构的人造石墨试样作为锂离子电池负极活性材料,考察了它在六种不同电解液中的恒电流充、放电性能和循环伏安特性,采用傅立叶变换红外光谱分析了不同电解液在试样颗粒表面发生还原反应时所形成的固体电解质中间相膜的成份和含量。据此得出的结论是:电解液与石墨类负极活性材料能否相容的问题,实质上就是所选定的电解液能否与其颗粒表面发生缓和的还原反应、生成薄而致密的只允许锂离子通过的固体电解质中间相膜。
An artificial graphite with a good structure for lithium-ion storage was selected as the negative electrode material in lithium ion batteries. The galvanostatic performance and the cyclic voltammetric characteristics were investigaed in six electrolytes. The compositions and the contents of the solid electrolyte interphase films formed on the surfaces of the graphite sample were analyzed by FTIR. Results show that if the selected electrolyte can react with the surface of the particles of artificial graphite moderately and form a thin and compact solid electrolyte interphase film through which only the lithium ions are permitted to pass, this kind of electrolyte is compatible with the graphitic negative electrode material.
出处
《新型炭材料》
SCIE
EI
CAS
CSCD
2004年第4期241-248,共8页
New Carbon Materials
基金
湖南省科技厅重点项目(00GK1006)
教育部博士点基金(200053209)~~
关键词
锂离子电池
电解液
石墨类负极活性材料
相容性
lithium ion batteries
electrolytes
graphitic negative electrode active material
compatibility