상세 보기
High-Energy-Density Li-Ion Batteries Employing Gradient Porosity LiFePO4 Electrode for Enhancing Li-Ion Kinetics and Electron Transfer
- Han, Seungmin;
- Lee, Hyungjun;
- Yang, Subi;
- Kim, Jaeik;
- Jeong, Jinwoo;
- ... Paik, Ungyu;
- ... Song, Taeseup;
- 외 9명
WEB OF SCIENCE
18SCOPUS
18초록
Lithium iron phosphate (LFP) cathodes are promising materials for energy storage device applications due to their thermal stability, chemical robustness, cost-effectiveness, and long lifespan. However, their low electronic and ionic conductivity, as well as challenges in achieving high packing density in thick electrodes, limit their practical implementation. In this study, a gradient porosity LFP electrode with a high areal capacity of 6.3 mAh cm−2 and an electrode density of 2.5 g cc−1 is proposed. In electrodes with gradient porosity, binder migration is mitigated, ensuring a uniform binder distribution that enhances Li-ion kinetics and adhesion strength between the electrode and aluminum current collector. Furthermore, by employing a particle with short charge carrier pathways in the bottom layer and a particle with a high tap density in the top layer, facile Li-ion and electron transfer and easier electrode processing can be achieved. The resulting gradient porosity electrode with a high areal capacity of 6.3 mAh cm−2 exhibits excellent cycle stability over 100 cycles in full-cell operation. These findings provide valuable insight into scalable strategies for high-energy-density, cost-effective LFP-based Li-ion batteries.
키워드
- 제목
- High-Energy-Density Li-Ion Batteries Employing Gradient Porosity LiFePO4 Electrode for Enhancing Li-Ion Kinetics and Electron Transfer
- 저자
- Han, Seungmin; Lee, Hyungjun; Yang, Subi; Kim, Jaeik; Jeong, Jinwoo; Lee, Yeseung; Chun, Jinyoung; Roh, Kwang Chul; Kim, Patrick Joohyun; Lee, Dongsoo; Sun, Seho; Jeong, Woojin; Choi, Bogem; Paik, Ungyu; Song, Taeseup; Choi, Junghyun
- 발행일
- 2025-07
- 유형
- Article; Early Access
- 저널명
- SMALL STRUCTURES
- 권
- 6
- 호
- 7
- 페이지
- 1 ~ 11