离子电导率
材料科学
电解质
陶瓷
锂(药物)
快离子导体
聚合物电解质
聚合物
化学工程
复合数
透视图(图形)
电极
复合材料
化学
计算机科学
工程类
心理学
精神科
物理化学
人工智能
作者
Li Song,Shiqi Zhang,Lu Shen,Qi Liu,Jiabin Ma,Wei Lv,Yan‐Bing He,Quan‐Hong Yang
标识
DOI:10.1002/advs.201903088
摘要
Solid composite electrolytes (SCEs) that combine the advantages of solid polymer electrolytes (SPEs) and inorganic ceramic electrolytes (ICEs) present acceptable ionic conductivity, high mechanical strength, and favorable interfacial contact with electrodes, which greatly improve the electrochemical performance of all-solid-state batteries compared to single SPEs and ICEs. However, there are many challenges to overcome before the practical application of SCEs, including the low ionic conductivity less than 10-3 S cm-1 at ambient temperature, poor interfacial stability, and high interfacial resistance, which greatly restrict the room temperature performance. Herein, the advances of SCEs applied in all-solid-state lithium batteries are presented, including the Li ion migration mechanism of SCEs, the strategies to enhance the ionic conductivity of SCEs by various morphologies of ICEs, and construction methods of the low resistance and stable interfaces of SCEs with both cathode and anode. Finally, some typical applications of SCEs in lithium batteries are summarized and future development directions are prospected. This work presents how it is quite significant to further enhance the ionic conductivity of SCEs by developing the novel SPEs with the special morphology of ICEs for advanced all-solid-state lithium batteries.
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