Authors
Wei Wang, Yanan Zhou, Bao Zhang, Weiyuan Huang, Lei Cheng, Jing Wang, Xinyou He, Lei Yu, Zhiming Xiao, Jianguo Wen, Tongchao Liu, Khalil Amine, Xing Ou
Publication date
2024/3/7
Journal
ACS nano
Volume
18
Issue
11
Pages
8002-8016
Publisher
American Chemical Society
Description
Single-crystal Ni-rich cathodes offer promising prospects in mitigating intergranular microcracks and side reaction issues commonly encountered in conventional polycrystalline cathodes. However, the utilization of micrometer-sized single-crystal particles has raised concerns about sluggish Li+ diffusion kinetics and unfavorable structural degradation, particularly in high Ni content cathodes. Herein, we present an innovative in situ doping strategy to regulate the dominant growth of characteristic planes in the single-crystal precursor, leading to enhanced mechanical properties and effectively tackling the challenges posed by ultrahigh-nickel layered cathodes. Compared with the traditional dry-doping method, our in situ doping approach possesses a more homogeneous and consistent modifying effect from the inside out, ensuring the uniform distribution of doping ions with large radius (Nb, Zr, W, etc). This mitigates …
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