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Interfacial Interaction-Engineered Dual Lithiophilic Ultrathin Interlayers for Dendrite-Suppressed Lithium Metal Textile Anodes
- Lee, Chanseok;
- Nam, Donghyeon;
- Baeck, Sang Hun;
- Kim, Boyeon;
- Song, Yongkwon;
- ... Kim, Hyeong Jun;
- 외 7명
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0초록
Lithium (Li) metal, known for its exceptional theoretical capacity and low redox potential, represents a promising anode material for next-generation Li-based batteries. However, its practical implementation is often compromised by uncontrolled dendritic Li growth during cycling, leading to safety hazards and accelerated degradation. In this study, we present a novel dual-interface engineering strategy aimed at mitigating Li dendrite formation through the incorporation of ultrathin lithiophilic interlayers on both the electrode (similar to 44 nm) and separator (similar to 2 nm). We utilize a Ni-electroplated textile as a conductive host, onto which lithiophilic Ag nanoparticles and amine-based molecular linkers are uniformly assembled via a ligand-exchange-mediated approach, resulting in an ultrathin lithiophilic interlayer. Simultaneously, the separator is modified through a hydrogen-bonding-driven assembly of NH2-functionalized poly(ethylene imine) and COOH-functionalized poly(acrylic acid), forming a similar to 2 nm interlayer that redistributes Li+ flux. This synergistic interfacial design enables symmetric cells to operate stably for over 2200 h at 1 mA cm- 2/1 mAh cm- 2, while lithium iron phosphate-based full cells retain approximately 72% capacity after 5000 cycles at 1 C. Our findings underscore dual-interface engineering as an effective and scalable approach for the development of safe and durable Li metal batteries.
키워드
- 제목
- Interfacial Interaction-Engineered Dual Lithiophilic Ultrathin Interlayers for Dendrite-Suppressed Lithium Metal Textile Anodes
- 저자
- Lee, Chanseok; Nam, Donghyeon; Baeck, Sang Hun; Kim, Boyeon; Song, Yongkwon; Kim, Jaemin; Kim, Daegun; Moon, Jun Hyuk; Chung, Yoon Jang; Kim, Hyeong Jun; Back, Seoin; Ko, Yongmin; Cho, Jinhan
- 발행일
- 2026-08
- 유형
- Article; Early Access
- 저널명
- Advanced Science
- 언어
- ENG
- 출판사
- WILEY-V C H VERLAG GMBH
- 발행국가
- 독일
- ISSN
- E 2198-3844