TY - JOUR
T1 - LiX Zeolites Hybrid Polyethylene Oxide-Based Polymer Electrolyte for Practical Lithium Metal Batteries
AU - Deng, Yunlong
AU - Chen, Jing
AU - Yue, Yaowen
AU - Liu, Chunli
AU - Cui, Manying
AU - Xiang, Qi
AU - Zhao, Hongyang
AU - Cao, Zhenjiang
AU - Jia, Kai
AU - Jin, Li
AU - Li, Yinhuan
AU - Liu, Yatao
AU - Wang, Juan
AU - Feng, Guodong
AU - Xi, Kai
N1 - Publisher Copyright:
© 2025 The Author(s). Carbon Neutralization published by Wenzhou University and John Wiley & Sons Australia, Ltd.
PY - 2025/9
Y1 - 2025/9
N2 - Polymer solid electrolytes (PSEs) serve as safer alternatives to liquid electrolytes for lithium metal batteries (LMBs) owing to their enhanced thermal and electrochemical stability. However, the practical application of PSEs is constrained by low ionic conductivity and suboptimal electrochemical performance. In this study, we develop a composite solid polymer electrolyte (CSPE) by incorporating LiX zeolites into a polyethylene oxide (PEO) matrix to create Li+ transport channels with low curvature, thereby enhancing Li⁺ mobility. The introduction of LiX significantly improves the electrochemical properties of the CSPE, achieving a high ionic conductivity of 8.5 × 10−4 S cm−1 at 60°C, and a broadened electrochemical stability window of 4.6 V. As a result, Li | |LiFePO4 all-solid-state cells exhibit excellent cycling performance, retaining 132.8 mAh g−1 with 85.71% capacity retention after 800 cycles at 1C. Furthermore, all-solid-state pouch cells assembled with LiX-based CSPEs maintain stable operation even under mechanical abuse conditions (e.g., folding, twisting, and cutting), highlighting their potential for safe and flexible energy storage applications.
AB - Polymer solid electrolytes (PSEs) serve as safer alternatives to liquid electrolytes for lithium metal batteries (LMBs) owing to their enhanced thermal and electrochemical stability. However, the practical application of PSEs is constrained by low ionic conductivity and suboptimal electrochemical performance. In this study, we develop a composite solid polymer electrolyte (CSPE) by incorporating LiX zeolites into a polyethylene oxide (PEO) matrix to create Li+ transport channels with low curvature, thereby enhancing Li⁺ mobility. The introduction of LiX significantly improves the electrochemical properties of the CSPE, achieving a high ionic conductivity of 8.5 × 10−4 S cm−1 at 60°C, and a broadened electrochemical stability window of 4.6 V. As a result, Li | |LiFePO4 all-solid-state cells exhibit excellent cycling performance, retaining 132.8 mAh g−1 with 85.71% capacity retention after 800 cycles at 1C. Furthermore, all-solid-state pouch cells assembled with LiX-based CSPEs maintain stable operation even under mechanical abuse conditions (e.g., folding, twisting, and cutting), highlighting their potential for safe and flexible energy storage applications.
KW - LiX zeolites
KW - all-solid-state batteries
KW - composite solid polymer electrolytes
KW - lithium metal batteries
KW - polyethylene oxide
UR - https://www.scopus.com/pages/publications/105016458276
U2 - 10.1002/cnl2.70037
DO - 10.1002/cnl2.70037
M3 - 文章
AN - SCOPUS:105016458276
SN - 2769-3333
VL - 4
JO - Carbon Neutralization
JF - Carbon Neutralization
IS - 5
M1 - e70037
ER -