Comparison Study of a Thermal-Driven Microstructure in a High-Ni Cathode for Lithium-Ion Batteries: Critical Calcination Temperature for Polycrystalline and Single-Crystalline Design

  • Lee, Kyoung Eun
  • Kim, Yura
  • Kim, Ju Seong
  • Kim, Kyoung Sun
  • Hong, Ki Joo
  • ... Lee, Dongwook
  • 외 3명
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초록

High-Ni layered oxide cathodes are promising candidates for lithium-ion batteries due to their high energy density. However, their cycle stability is compromised by the poor mechanical durability of the particle microstructure. In this study, we investigate the impact of the calcination temperature on microstructural changes, including primary particle growth and pore evolution, using LiNi0.88Mn0.08Co0.04O2 (N884), with an emphasis on the critical calcination temperature for polycrystalline and single-crystal designs in high-Ni cathodes. As the calcination temperature increases, the primary particles undergo a rectangular growth pattern while the pore population decreases. Beyond a certain critical temperature (in this case, 850 degree celsius), a sudden increase in primary particle size and a simultaneous rapid reduction in the pore population are observed. This sudden microstructure evolution leads to poor cycle retention in N884. In contrast, single-crystal particles, free of grain boundaries, synthesized at this critical temperature exhibit superior cycle retention, underscoring the significance of microstructural design over crystalline quality for achieving long-term cyclability. Our study sheds light on the interplay between calcination temperature and microstructural evolution, proposing the critical temperature as a key criterion for single-crystal synthesis.

키워드

high-Ni NCM layered oxide cathodessynthetic temperaturemicrostructuresingle-crystal cathodelithium-ionbatteriesRICHDIFFRACTIONPERFORMANCEALUMINUM
제목
Comparison Study of a Thermal-Driven Microstructure in a High-Ni Cathode for Lithium-Ion Batteries: Critical Calcination Temperature for Polycrystalline and Single-Crystalline Design
저자
Lee, Kyoung EunKim, YuraKim, Ju SeongKim, Kyoung SunHong, Ki JooNam, Sang-CheolKim, HyungsubLee, DongwookPark, Kyu-Young
DOI
10.1021/acsami.4c00514
발행일
2024-04-29
유형
Article
저널명
ACS Applied Materials & Interfaces
16
18
페이지
23150 ~ 23159