상세 보기
Charging-State Behavior of N/O/F-Doped Carbon Anodes for K-Ion Batteries
- Jang, Jaewon;
- Kim, Young-Hoon;
- Yang, Junghoon;
- Kim, Jungpil
WEB OF SCIENCE
0SCOPUS
0초록
Potassium-ion batteries (KIBs) are emerging as cost-effective alternatives to Li- and Na-ion systems, yet their performance is governed by adsorption-driven K storage on carbon anodes and the associated charging-state transition from K+ to neutral K. Here, density functional theory was used to elucidate the charging-state potassium storage on heteroatom-doped graphene, systematically comparing N, O, and F single doping and their multi-doped combinations (N/O, O/F, N/F, and N/O/F). By integrating molecular electrostatic potential mapping, K+/K adsorption energetics, adsorption-derived operating voltages, optimized adsorption geometries, and HOMO–LUMO characteristics, we established a unified framework linking electrostatic modulation to thermodynamic balance and structural accommodation. N doping produced a locally electron-enriched potential landscape that strengthens K+ anchoring, whereas O doping most effectively reduced the energetic mismatch between K+ adsorption and neutral K storage, thereby moderating the K+→ K conversion penalty. F doping induced pronounced nonplanarity and a compliant adsorption pocket that enhances out-of-plane accommodation of both K+ and K. In multi-doped systems, N/O and O/F exhibited complementary role sharing that stabilizes adsorption and K+→ K conversion, while N/F revealed a trade-off without O. Notably, N/O/F co-doping optimized electrostatic driving force, conversion energetics, and structural compliance, providing practical design rules for advanced carbon anodes in KIBs.
키워드
- 제목
- Charging-State Behavior of N/O/F-Doped Carbon Anodes for K-Ion Batteries
- 저자
- Jang, Jaewon; Kim, Young-Hoon; Yang, Junghoon; Kim, Jungpil
- 발행일
- 2026-04
- 유형
- Article
- 저널명
- CHEMNANOMAT
- 권
- 12
- 호
- 4
- 페이지
- 1 ~ 12