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Miniature Li+ solvation by symmetric molecular design for practical and safe Li-metal batteries
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- Title
- Miniature Li+ solvation by symmetric molecular design for practical and safe Li-metal batteries
- Issued Date
- 2025-04
- Citation
- Jang, Jinha. (2025-04). Miniature Li+ solvation by symmetric molecular design for practical and safe Li-metal batteries. Nature Energy, 10(4), 502–512. doi: 10.1038/s41560-025-01733-9
- Type
- Article
- Keywords
- SOLID-STATE ELECTROLYTES ; LITHIUM ; INTERPHASE
- ISSN
- 2058-7546
- Abstract
-
Developing high-safety Li-metal batteries (LMBs) with rapid rechargeability represents a crucial avenue for the widespread adoption of electrochemical energy storage devices. Realization of LMBs requires an electrolyte that combines non-flammability with high electrochemical stability. Although current electrolyte technologies have enhanced LMB cyclability, rational electrolyte fabrication capable of simultaneously addressing high-rate performance and safety remains a grand challenge. Here we report an electrolyte design concept to enable practical, safe and fast-cycling LMBs. We created miniature anion–Li+ solvation structures by introducing symmetric organic salts into various electrolyte solvents. These structures exhibit a high ionic conductivity, low desolvation barrier and interface stabilization. Our electrolyte design enables stable, fast cycling of practical LMBs with high stability (LiNi0.8Co0.1Mn0.1O2 cell (twice-excessed Li): 400 cycles) and high power density (pouch cell: 639.5 W kg−1). Furthermore, the Li-metal pouch cell survived nail penetration, revealing its high safety. Our electrolyte design offers a viable approach for safe, fast-cycling LMBs. © The Author(s), under exclusive licence to Springer Nature Limited 2025.
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- Publisher
- Nature Publishing Group
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