电解质
金属锂
离子电导率
材料科学
聚合物电解质
聚合物
溶剂化
电导率
锂(药物)
化学工程
无机化学
金属
电极
工作(物理)
电池(电)
电阻率和电导率
离子键合
化学
高氯酸锂
锂离子电池的纳米结构
有机自由基电池
锂电池
电化学
作者
Wang Shaolong,Chunjin Wu,Chengning Li,Xinyi Wu,Chen Liu,Haixia Cui,Wen Wu,Lei Li,Wen‐Yong Lai
摘要
ABSTRACT Polymer electrolytes are promising for high‐energy‐density lithium metal batteries (LMBs), yet their widespread use is hindered by low room‐temperature ionic conductivity, narrow electrochemical stability, and poor interfacial compatibility. A novel eutectic polymer electrolyte (I‐EPE0.15) has been developed by incorporating a succinonitrile‐based eutectic electrolyte into a poly(diacetone acrylamide) matrix. Such structure enhances continuous ion transport pathways by amplifying the eutectic network and decreases the likelihood of Li + capture by the polymer's polar groups through a coordination competition mechanism. As‐prepared I‐EPE0.15 exhibits an ionic conductivity of 2.3 mS cm −1 at 30°C and a 5.1 V electrochemical stability window. The corresponding Li/Li symmetric batteries achieve stable cycling over 1000 h at 0.1 mA cm −2 , and Li/NCM811 batteries retain 70.8% of their capacity after 500 cycles at 1 C. Moreover, pouch batteries further demonstrate robust cycling and safety. This work provides a viable strategy toward stable polymer electrolytes for practical LMBs.
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