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Structural and surface-modified freestanding carbon nanofiber hosts for high-performance lithium-metal batteries
- Kim, Noeul;
- Sim, Jae Sol;
- Choi, Jae Hun;
- Lee, Jung-Kul;
- Kang, Yun Chan
WEB OF SCIENCE
3SCOPUS
3초록
The commercialization of Li-metal batteries is limited by uncontrolled Li dendrite growth, causing short circuits and capacity degradation. Carbon nanofibers (CNFs) have been explored as 3D Li-metal hosts to reduce local current density, but their intrinsic lithiophobicity hinders uniform Li deposition. Herein, we report a freestanding 3D CNF scaffold decorated with ZnO and coated with SnO2 via electrospinning and e-beam evaporation. The embedded ZnO particles serve as lithiophilic nucleation sites, guiding uniform Li plating throughout the structure. Meanwhile, the SnO2 surface layer undergoes lithiation to form Li-Sn alloy and Li2O, which enhance interfacial charge transfer and suppress dendrite formation. Notably, the SnO2 coating induces a vertical electronic conductivity gradient across the scaffold, mitigating top-surface Li deposition and promoting stable, internal plating. Benefiting from this structural and gradient surface modification, the engineered electrode achieves a Coulombic efficiency of 97 % over 260 cycles at 1.0 mA cm(-2). At a high Li loading of 5.0 mAh cm(-2), the symmetric cell maintains a low overpotential (<30 mV) for over 900 h. A full cell coupled with LiFePO4 delivers excellent cycling stability with 91.2 % capacity retention after 180 cycles at 1.0C. This strategy offers a promising route for safe, high-performance Li-metal batteries.
키워드
- 제목
- Structural and surface-modified freestanding carbon nanofiber hosts for high-performance lithium-metal batteries
- 저자
- Kim, Noeul; Sim, Jae Sol; Choi, Jae Hun; Lee, Jung-Kul; Kang, Yun Chan
- 발행일
- 2026-02
- 유형
- Article
- 저널명
- Carbon
- 권
- 247