Induction Effect of Fluorine-Grafted Polymer-Based Electrolytes for High-Performance Lithium Metal Batteries

被引:0
作者
Hu, Haiman [1 ]
Li, Jiajia [1 ]
Lin, Fei [1 ]
Huang, Jiaqi [1 ]
Zheng, Huaiyang [1 ]
Zhang, Haitao [2 ]
Ji, Xiaoyan [1 ]
机构
[1] Lulea Univ Technol, Div Energy Sci, Energy Engn, S-97187 Lulea, Sweden
[2] Chinese Acad Sci, Beijing Key Lab Ion Liquids Clean Proc, Inst Proc Engn, CAS Key Lab Green Proc & Engn, Beijing 100190, Peoples R China
基金
中国国家自然科学基金;
关键词
Fluorine-grafted polymer; Induction effect; High interface stability; Quasi-solid-state electrolytes; Lithium metal battery;
D O I
10.1007/s40820-025-01738-9
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Quasi-solid-state composite electrolytes (QSCEs) show promise for high-performance solid-state batteries, while they still struggle with interfacial stability and cycling performance. Herein, a F-grafted QSCE (F-QSCE) was developed via copolymerizing the F monomers and ionic liquid monomers. The F-QSCE demonstrates better overall performance, such as high ionic conductivity of 1.21 mS cm-1 at 25 degrees C, wide electrochemical windows of 5.20 V, and stable cycling stability for Li//Li symmetric cells over 4000 h. This is attributed to the significant electronegativity difference between C and F in the fluorinated chain (-CF2-CF-CF3), which causes the electron cloud to shift toward the F atom, surrounding it with a negative charge and producing the inductive effect. Furthermore, the interactions between Li+ and F, TFSI-, and C are enhanced, reducing ion pair aggregation (Li+-TFSI--Li+) and promoting Li+ transport. Besides, -CF2-CF-CF3 decomposes to form LiF preferentially over TFSI-, resulting in better interfacial stability for F-QSCE. This work provides a pathway to enable the development of high-performance Li metal batteries.
引用
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页数:19
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