기본 정보
연구 분야
프로젝트
논문
구성원
article|
인용수 61
·2022
Solid‐State Reaction Heterogeneity During Calcination of Lithium‐Ion Battery Cathode
Sugeun Jo, Jeongwoo Han, Sungjae Seo, Oh‐Sung Kwon, Subin Choi, Jin Zhang, Hyejeong Hyun, Juhyun Oh, Juwon Kim, Jinkyu Chung, Hwiho Kim, Jian Wang, Junho Bae, Junyeob Moon, Yoon‐Cheol Park, Moon‐Hi Hong, Miyoung Kim, Yijin Liu, Il Sohn, Keeyoung Jung, Jongwoo Lim
IF 26.8Advanced Materials
초록

During solid-state calcination, with increasing temperature, materials undergo complex phase transitions with heterogeneous solid-state reactions and mass transport. Precise control of the calcination chemistry is therefore crucial for synthesizing state-of-the-art Ni-rich layered oxides (LiNi<sub>1-x-y</sub> Co<sub>x</sub> Mn<sub>y</sub> O<sub>2</sub> , NRNCM) as cathode materials for lithium-ion batteries. Although the battery performance depends on the chemical heterogeneity during NRNCM calcination, it has not yet been elucidated. Herein, through synchrotron-based X-ray, mass spectrometry microscopy, and structural analyses, it is revealed that the temperature-dependent reaction kinetics, the diffusivity of solid-state lithium sources, and the ambient oxygen control the local chemical compositions of the reaction intermediates within a calcined particle. Additionally, it is found that the variations in the reducing power of the transition metals (i.e., Ni, Co, and Mn) determine the local structures at the nanoscale. The investigation of the reaction mechanism via imaging analysis provides valuable information for tuning the calcination chemistry and developing high-energy/power density lithium-ion batteries.

키워드
CalcinationMaterials scienceLithium (medication)CathodeChemical engineeringIonChemical reactionChemical stateSolid-state chemistryReaction mechanism
타입
article
IF / 인용수
26.8 / 61
게재 연도
2022

주식회사 디써클

대표 장재우,이윤구서울특별시 강남구 역삼로 169, 명우빌딩 2층 (TIPS타운 S2)대표 전화 0507-1312-6417이메일 info@rndcircle.io사업자등록번호 458-87-03380호스팅제공자 구글 클라우드 플랫폼(GCP)

© 2026 RnDcircle. All Rights Reserved.