Abstract
Herein, we report a mild thiol-ene click chemistry strategy for the in-situ fabrication of a three-dimensional cross-linked gel polymer electrolyte (PAE) on the electrode surface within 5 min under UV initiation. The PAE, formed by the polymerization of pentaerythritol tetrakis (3-mercaptopropionate) (PETMP) and divinyl adipate (ACDE), minimizes the potential adverse effects of residual monomers or by-products on battery performance. Benefiting from the compact cross-linked network, the obtained gel electrolyte exhibits an ionic conductivity of 0.536 mS cm−1at room temperature, a Li+ transference number of 0.45, and an initial decomposition temperature above 200 °C. In addition, the PAE effectively confines the liquid components and forms a stable organic-inorganic composite interface, which promotes stable interfacial kinetics and long-term cycling of LiFeP4-based cells. As a result, Li||Li symmetric cells incorporating PAE deliver stable cycling for over 2700 h, while Li||LiFePO4cells retain 94.6% of their capacity after 800 cycles. This work provides a rapid and efficient route for constructing high-performance gel polymer electrolytes and demonstrates strong potential for the scalable fabrication of quasi-solid-state lithium metal batteries.
| Original language | English |
|---|---|
| Article number | 240534 |
| Journal | Journal of Power Sources |
| Volume | 686 |
| DOIs | |
| Publication status | Published - 15 Sept 2026 |
Keywords
- Click chemistry
- Gel polymer electrolyte
- Lithium metal battery
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