摘要
为了替代传统的聚烯烃微孔膜,对用于锂离子电池的Al2O3/Si O2/PE无机/有机复合隔膜进行了研究。复合膜具有高度多孔性和良好液体电解液湿润性。由于高的毛细吸附作用,通过吸附液态电解液,膜很易传导锂离子。膜中Al2O3/Si O2的两性特征将电解液中的酸性氟化氢(HF)消耗掉,而HF作为现在锂离子电池所用电解液中的杂质是不可避免的。复合膜作为隔膜制备的碳/正极材料锂离子电池不仅具有优良的容量保持性、高温安全性,也显示了良好的倍率放电性。
Al2O3/SiO2/PE organ-inorganic composite membrane was prepared in order to replace the traditional polyolefin microporous membrane. The composite membrane has high porosity and can be well wetted by liquid electrolyte. The ion conductivity of the membrane is easily achieved by absorbing the liquid electrolyte due to the high capillary effect. The amphoteric character of Al2O3/SiO2 can scavenge acidic hydrogen fluoride (HF), which is inevitably present in the LiPF6-based electrolytes used currently in the U-ion batteries. With the composite membrane as a separator, the carbon/cathode Li-ion batteries exhibit good capacity retention, high temperature safety and good rate discharge performance.
出处
《电源技术》
CAS
CSCD
北大核心
2015年第6期1194-1197,共4页
Chinese Journal of Power Sources
基金
四川教育厅基金项目(11ZA165)
绵阳师范学院支持项目(2011D01)
关键词
复合膜
隔膜
锂离子电池
离子电导
循环性能
composite membrane
separator
Li-ion battery
ion conductivity
cycle performance