A new concentration gradient design employing wet-doped tungsten for advanced Ni-rich cathodes

  • Kim, Gwang-Ho
  • Park, Geon-Tae
  • Yoon, Jung-In
  • Ryu, Ji-Hyun
  • Seo, Min-Gyu
  • ... Sun, Yang-Kook
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초록

To overcome the intrinsic challenges associated with Ni-rich cathodes, heteroelement doping has been widely explored for the fabrication of concentration-gradient cathodes. However, the majority of studies have adopted conventional dry doping processes during cathode calcination, leading to non-uniform dopant distributions and structural heterogeneity, which ultimately compromise any improvements in the cycling performance. In this study, a new compositionally partitioned design is proposed, which comprises a NiMn core and a NiCoW shell, along with a regionally targeted wet doping strategy. A spherical precursor with a composition of [Ni0.900Co0.075Mn0.020W0.005](OH)2, consisting of a [Ni0.960Mn0.040](OH)2 core and a uniform [Ni0.820Co0.170W0.010](OH)2 shell, was successfully synthesized via a co-precipitation approach. The proposed targeted wet doping strategy selectively concentrated tungsten in the shell region, where structural or interfacial degradation was the most severe, thereby maximizing the performance improvement in the cathode material. The modified crystal structure and well-regulated primary particle morphology contributed to the enhanced cycling stability of the concentration-gradient Ni-rich cathode and significantly reduced heat generation during electrochemical cycling. Therefore, this regionally targeted W doping strategy provides a practical and scalable approach for developing next-generation Ni-rich cathode materials for lithium-ion batteries with enhanced cycle life and improved thermal stability.

키워드

Strategic precursor designNi-rich cathode materialConcentration gradientMicrostructure engineeringThermal stabilityLITHIUM-ION BATTERIESGRAIN BOUNDARIESLAYERED CATHODELIFE
제목
A new concentration gradient design employing wet-doped tungsten for advanced Ni-rich cathodes
저자
Kim, Gwang-HoPark, Geon-TaeYoon, Jung-InRyu, Ji-HyunSeo, Min-GyuSun, Yang-Kook
DOI
10.1016/j.jpowsour.2025.238279
발행일
2025-12
유형
Article
저널명
Journal of Power Sources
658
페이지
1 ~ 12