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Boosting the Energy Density Through In Situ Thermal Gelation of Polymer Electrolyte with Lithium-Graphite Composite Anode
- Kang, Chea-Yun;
- Lee, Rae-Hyun;
- Lee, Jong-Kyu;
- Kim, Kyong-Nam;
- Yoon, Jung-Rag;
- ... Lee, Seung-Hwan
WEB OF SCIENCE
4SCOPUS
3초록
We have entered the age of renewable energy revolution. Hence, energy-dense all-solid-state lithium metal batteries are now being actively researched as one of the most promising energy storage systems. However, they have not yet been a silver bullet due to the dendrite formation and interfacial issue. Here, we introduce the hybrid polymer electrolyte via a novel solvent-free strategy as well as utilize a polymerization and gelation effect of cyanoethyl polyvinyl alcohol to achieve superior electrochemical performance. The hybrid polymer electrolyte, using cyanoethyl polyvinyl alcohol, demonstrates a stable artificial solid electrolyte interface layer, which suppresses the continuous decomposition of Li salts. Importantly, we also present the lithium-graphite composite anode to reach the super-high-energy-density anode materials. Taken together, these advancements represent a significant stride toward addressing the challenges associated with all-solid-state lithium metal batteries.
키워드
- 제목
- Boosting the Energy Density Through In Situ Thermal Gelation of Polymer Electrolyte with Lithium-Graphite Composite Anode
- 저자
- Kang, Chea-Yun; Lee, Rae-Hyun; Lee, Jong-Kyu; Kim, Kyong-Nam; Yoon, Jung-Rag; Lee, Seung-Hwan
- 발행일
- 2025-07
- 유형
- Article
- 저널명
- ENERGY & ENVIRONMENTAL MATERIALS
- 권
- 8
- 호
- 4