Tuning of aluminum concentration distribution in high nickel cathode particles for lithium ion batteries

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초록

This study focuses on a novel approach for the structural design of LiNi0.86Co0.12Al0.02O2 cathodes by tailoring the distribution of Al elements using milled-Al(OH)3. The distribution of Al in the cathode material is investigated using an electron probe micro analyzer. By controlling milled-Al(OH)3 addition time at 3 and 6 h, thickness of Al-rich layer is varied during co-precipitation process and following calcination with LiOH produces cathode materials with the variant Al distribution. Initial discharge capacities of the cathodes with the Al addition at 3 and 6 h are 202 and 195 mA h g−1 and the IE (initial efficiency) is 92.5 and 86.6%, respectively. The capacity retentions from the cycling test of the individual cathodes are as high as 96.7 and 92.6% at 50 cycles under 1 C rate, respectively. This advanced electrochemical performance is attributed to gradual increase of Al element from inner to outer in active material. © 2019

키워드

Co-precipitation; Distribution of Al elements; EPMA; High Ni cathode materials; Li-ion batteries; NCA cathode materials; Tuning of aluminum concentration distribution; ELECTROCHEMICAL PERFORMANCE; RICH CATHODE; LONG-LIFE; NI-RICH; LINI0.8CO0.15AL0.05O2; AL; NANOPARTICLES; MICROSPHERES; IMPROVEMENT; VOLTAGE
제목
Tuning of aluminum concentration distribution in high nickel cathode particles for lithium ion batteries
저자
Lee, Ilbok; Bae, Joongho; Kim, Jaekwang; Kim, Young-Min; Ha, Don-Hyung; Son, Hyungbin; Yoon, Songhun
DOI
10.1016/j.jallcom.2019.152677
발행일
2020-03
유형
Article
저널명
Journal of Alloys and Compounds
권
816