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有机电解液在锂离子电池中的充放电机理
Mechanism of electrochemical behaviors of anhydrous organic electrolyte in lithium-ion batteries
【摘要】 讨论了锂离子电池充放电过程中有机电解液的电化学行为,研究发现,有机电解液会在电极活性材料表面发生电化学反应而形成聚合物钝化层(SEI膜),其厚度和疏密性与电解液的组成及充放电制度有关;其组成和电化学性能还将直接影响锂离子电池的充放电容量和循环寿命。通过改变电解液的导电锂盐成分、有机溶剂组成和加入极性添加剂等方法可优化电解液的电化学特性,从而可有效控制该钝化层的成膜过程、膜组成与膜结构,提高锂离子电池的充放电及循环性能。
【Abstract】 The behavior of electrochemistry for the anhydrous organic electrolyte is discussed, the polymer passivation layer, namely solid electrolyte interphase film is formed by anhydrous organic electrolyte solutions on the surface of the electrode active materials through the electrochemical reaction. The thickness and density of the passivation film is related to the composition of electrolyte solution and its charge-discharge system,and directly influence the charging-discharging capacity and cycle life of the lithium-ion batteries. The electrochemical characteristics of the electrolyte solutions are optimized by changing the composition of the conducting salt and the organic solvent or adding polar additive, which can control the film forming process, composition and its structure effectively, and improve the charge-discharge performance of the lithium-ion batteries.
【Key words】 lithium-ion secondary battery; electrolyte solution; solid electrolyte interphase film; additives; stability;
- 【文献出处】 现代化工 ,Modern Chemical Industry , 编辑部邮箱 ,2005年05期
- 【分类号】TM911
- 【被引频次】13
- 【下载频次】834