상세 보기
- Park, Sung Joon;
- Lee, Hami;
- Lee, Hee-Beom;
- Kweon, Hyunji;
- Park, Bo Keun;
- ... Kim, Jongsoon;
- ... Kim, Young-Min;
- ... Kim, Ki Jae;
- 외 3명
WEB OF SCIENCE
2SCOPUS
2초록
Water-washing effectively removes surface residual lithium from high-Ni LiNi0.8Co0.1Mn0.1O2 (NCM) cathodes; however, it inevitably degrades the electrochemical performance. To address this issue, integrated strategies targeting the conversion of surface residual lithium into artificial coating layers on high-Ni NCM cathodes have been proposed; however, these require further processing, thus hindering their industrial application. This study proposes a trailblazing strategy for directly converting residual lithium into a LiF layer simultaneously formed on both the surface of secondary particles and the interfaces between the primary particles of high-Ni NCM, without requiring further processing. This is achieved by modifying the conventional sintering process, with the main change being the replacement of the final air-cooling step with quenching, performed using a fluorinated ketone as a quenching medium. Furthermore, through controlled experiments conducted at various quenching temperatures, the distinct roles of surface and interfacial LiF in influencing the structural stability of high-Ni NCM cathodes are elucidated. Surface LiF primarily prevents electrolyte-induced side reactions, while interfacial LiF plays a crucial role in mitigating microcrack formation. Therefore, the full cell assembled using high-Ni NCM with surface and interfacial LiF layers and a graphite anode demonstrate a stable cycling performance over 300 cycles, highlighting the practical potential of this process.
키워드
- 제목
- A Trailblazing Quenching Strategy for Simultaneous LiF Formation at Surface and Intergranular Interfaces for Enhanced Stability of High-Ni NCM Cathodes
- 저자
- Park, Sung Joon; Lee, Hami; Lee, Hee-Beom; Kweon, Hyunji; Park, Bo Keun; Kim, Ji Won; Yun, Fan; Zhang, Fang; Kim, Jongsoon; Kim, Young-Min; Kim, Ki Jae
- 발행일
- 2025-10
- 유형
- Article; Early Access
- 저널명
- Small
- 권
- 21
- 호
- 42