A Hierarchically Designed Janus Polymer Electrolyte for High-Performance Lithium-Metal Batteries

被引:0
|
作者
Zhang, Liting [1 ]
Jo, Seunghwan [1 ]
Shin, Ki Hoon [1 ]
Kim, Eunmin [1 ]
Lee, Keon Beom [1 ]
Cui, Ruhao [1 ]
Kim, Min-Cheol [1 ]
Hong, John [2 ]
Sohn, Jung Inn [1 ]
机构
[1] Dongguk Univ Seoul, Div Phys & Semicond Sci, Seoul 04620, South Korea
[2] Kookmin Univ, Sch Mat Sci & Engn, Seoul 02707, South Korea
基金
新加坡国家研究基金会;
关键词
interface stability; janus-structured polymer electrolytes; Li dendrites; solid-state lithium-metal batteries;
D O I
10.1002/adfm.202419481
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Practical implementations of solid polymer electrolytes (SPEs) in solid-state lithium-metal batteries (SSLMBs) are inhibited by the limited lithium-ion (Li+) transport and poor-quality interface between SPEs and both electrodes. SPEs exhibit lower ionic conductivity than other electrolytes and are oxidized and decomposed by oxide-based cathode materials in high-voltage windows. SSLMBs are also long-term destabilized by parasitic side reactions at the electrode-electrolyte interfaces and Li dendrite formations. This study proposes a selectively designed Janus-structured polymer electrolyte (JPE), which is more physically and chemically compatible with the electrodes than other SPEs. The proposed JPE includes a cathode-facing composite polymer electrolyte (C-CPE) containing succinonitrile and Li7La3Zr2O12, and an anode-facing composite polymer electrolyte (A-CPE) incorporating fluoroethylene carbonate (FEC). The C-CPE layer provides additional Li+ paths and increases the antioxidant properties, improving the high-voltage tolerance of the SSLMB, while the A-CPE layer alleviates side reactions with the Li metal anode and improves the stability against protruding dendrites. Full cells of Li|JPE|Ni0.8Co0.15Al0.05O2 and Li|JPE|LiCoO2 remain stable over 1600 cycles at 1 C, demonstrating the potential of the JPE structures for SSLMBs. Moreover, symmetric Li||Li cells assembled with the JPE cycle over 2500 h at 0.1 mA cm-2 and 1000 h at 0.5 mA cm-2.
引用
收藏
页数:8
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