Strategic Synthetic Pathway for Tailoring the Crystallographic and Microstructural Evolution of Cathode Materials for Li-Ion Batteries

  • Seo, Min-Gyu
  • Han, Sang-Mun
  • Jo, Hyoung-Jun
  • Park, Geon-Tae
  • Kim, Gwang-Ho
  • ... Park, Nam-Yung
  • 외 1명
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초록

Urban air mobility (UAM) demands a Ni-rich cathode to balance the energy density, power, and stability; however, the synthesis of the cathode material struggles to optimize lithiation and the microstructure owing to the conflicting thermal requirements. Herein, we propose a strategic two-step calcination protocol that functionally decouples lithiation from structural evolution. Via a sequential process of intermediate-temperature lithiation, followed by cooling and high-temperature calcination with Nb doping to control the structural evolution, we fabricated a cathode material comprising fine, radially aligned primary particles. This strategy retarded complete phase transformation, establishing a unique multiphase structure, wherein rocksalt nanodomains coexisted within a layered matrix. This intentionally preserved intermediate phase facilitated a reversible spinel-like transformation upon charging, providing three-dimensional Li diffusion pathways. The optimized cathode demonstrated long-term power stability under harsh UAM flight profiles. This study presents a systematic approach for tailoring the physicochemical properties by precisely controlling the reaction pathway.

제목
Strategic Synthetic Pathway for Tailoring the Crystallographic and Microstructural Evolution of Cathode Materials for Li-Ion Batteries
저자
Seo, Min-GyuHan, Sang-MunJo, Hyoung-JunPark, Geon-TaeKim, Gwang-HoPark, Nam-YungSun, Yang-Kook
DOI
10.1021/acsenergylett.6c00663
발행일
2026-04-06
유형
Article; Early Access
저널명
ACS ENERGY LETTERS
11
5
페이지
4084 ~ 4093