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Effects of cationic substitution on structural defects in layered cathode materials LiNiO2

机译:阳离子取代对层状正极材料LiNiO2结构缺陷的影响

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摘要

The electrochemical properties of layered rock salt cathode materials are strongly influenced by defects.udThe three most common defects in LiNiO2-based compounds, namely extra Ni, Li–Ni anti-site andudoxygen vacancy defects have been investigated. The calculated defect formation energies are very low inudLiNiO2, consistent with the difficulty in synthesizing stoichiometric defect-free LiNiO2. A systematic studyudis conducted to examine the effect of Co, Mn and Al substitution on defect formation. It is shown thatudthe presence of Ni2+ in the Li layer can be rationalized using ideas of superexchange interactions. Inudaddition, a correlation between oxygen vacancy formation energy and oxygen charge is noted. Thisudexplains the better thermal stability obtained by early transition metal or Al substitutions.
机译:层状岩盐阴极材料的电化学性能受到缺陷的强烈影响。 ud研究了LiNiO2基化合物中最常见的三个缺陷,即额外的Ni,Li-Ni反位和 u氧空位缺陷。计算出的缺陷形成能在udLiNiO2中非常低,这与合成化学计量的无缺陷LiNiO2的难度一致。进行了系统的研究以检查Co,Mn和Al替代对缺陷形成的影响。结果表明,使用超交换相互作用的思想可以合理地说明Li层中Ni 2+的存在。此外,注意到氧空位形成能与氧电荷之间的相关性。这说明了通过早期过渡金属或Al替代获得的更好的热稳定性。

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