English

Understanding how off-stoichiometry promotes cation mixing in LiNiO$_2$

Materials Science 2024-01-12 v1

Abstract

Although LiNiO2_2 is chemically similar to LiCoO2_2 and offers a nearly identical theoretical capacity, LiNiO2_2 and related Co-free Ni-rich cathode materials suffer from degradation during electrochemical cycling that has prevented practical use in Li-ion batteries. The observed capacity decay of LiNiO2_2 has been attributed to the formation of structural defects via Li/Ni cation mixing that reduces cyclability and leads to poor capacity retention. Herein, we investigate the kinetics and thermodynamics of Li/Ni mixing in ideal LiNiO2_2 and off-stoichiometric Li1z_{1-z}Ni1+z_{1+z}O2_2. We find that ideal LiNiO2_2 is stable against cation mixing with similar characteristics as LiCoO2_2. Li/Ni mixing is promoted by extra Ni in the Li layers that cannot be avoided in synthesis. Our study elucidates the crucial role of extra Ni atoms on Li sites in the cation mixing mechanism, an insight that can inform the development of Co-free cathode materials.

Keywords

Cite

@article{arxiv.2401.05983,
  title  = {Understanding how off-stoichiometry promotes cation mixing in LiNiO$_2$},
  author = {Cem Komurcuoglu and Yunhao Xiao and Xinhao Li and Joaquin Rodriguez-Lopez and Zheng Li and Alan C. West and Alexander Urban},
  journal= {arXiv preprint arXiv:2401.05983},
  year   = {2024}
}

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