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Updated: Apr 11, 2026

Solid-state Graft Copolymer Electrolytes for Lithium Battery Applications
Published on: August 12, 2013
High-Performance Poly(ethylene Oxide)-Based Composite Solid Electrolyte with Enhanced Room-Temperature Ionic
Guoxu Wang1, Qinghua Liu1, Shang-Sen Chi2
1School of Chemistry and Chemical Engineering, Heze University, Heze, 274015, China.
Abstract:
Poly(ethylene oxide) (PEO)-based solid-state polymer electrolytes have emerged as one of the most promising candidates for high-energy-density lithium-metal batteries in energy storage applications. However, their notably low ionic conductivity has significantly hindered PEO-based polymer electrolytes' practical application and development, particularly at room temperature (RT). To address the critical challenge of low RT ionic conductivity in PEO-based solid-state electrolytes, this study develops a composite solid electrolyte (CSE) synergistically reinforced by high-concentration lithium salts and Al2O3 filler. The "polymer-in-salt" strategy disrupts PEO crystallinity via concentrated Li salt to form continuous ion channels, while Al2O3 further suppresses crystallization and bridges ionic cluster transport. This dual optimization achieves an ultrahigh ionic conductivity of 9.62 × 10-4 S cm-1 and a 4.8 V electrochemical stability window at RT. The Li symmetric cell exhibits stable cycling for 1000 h at 1 mA cm-2/1 mAh cm-2, and the all-solid-state Li//LiFePO4 coin cell retains 70.7% capacity after 300 cycles at 0.1C. Moreover, Li//LiFePO4 pouch cell maintains 96.4% capacity over 100 cycles at RT. This work establishes a new paradigm for material design and performance enhancement in practical solid-state lithium batteries.
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