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锂离子电池正极材料 LiNiO 的表面稳定性和形态的理论预测。

Theoretical Prediction of Surface Stability and Morphology of LiNiO Cathode for Li Ion Batteries.

机构信息

Platform Technology Lab, Samsung Advanced Institute of Technology , 130 Samsung-ro, Suwon, Gyeonggi-do 16678, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2017 Sep 27;9(38):33257-33266. doi: 10.1021/acsami.7b08563. Epub 2017 Sep 19.

Abstract

Ni-rich layered oxides are considered to be a promising cathode material with high capacity, and their surface structure should be extensively explored to understand the complex associated phenomena. We investigated the surface stability and morphology of LiNiO as a representative of these materials by using density functional theory calculations. The results reveal that the Li-exposed surfaces have lower energies than the oxygen surfaces, irrespective of the facets, and the Ni-exposed ones are the least stable. The equilibrium morphology can vary from truncated trigonal bipyramid to truncated egg shape, according to the chemical potential, whose range is confined by the phase diagram. Moreover, the electrochemical window of stable facets is found to strongly depend on the surface elements rather than the facet directions. Contrary to the stable Li surfaces, oxygen exposure on the surface considerably lowers the Fermi level to the level of electrolyte, thereby accelerating oxidative decomposition of the electrolyte on the cathode surface.

摘要

富镍层状氧化物被认为是一种很有前途的正极材料,具有高容量,应该广泛探索其表面结构,以了解与之相关的复杂现象。我们使用密度泛函理论计算研究了 LiNiO 等材料的表面稳定性和形貌。结果表明,无论晶面如何,Li 暴露表面的能量都低于 O 暴露表面,而 Ni 暴露表面的稳定性最低。根据相图,平衡形态可以从截角三角双锥变为截角蛋形,取决于化学势的范围。此外,还发现稳定晶面的电化学窗口强烈依赖于表面元素,而不是晶面方向。与稳定的 Li 表面相反,表面的 O 暴露会使费米能级显著降低到电解质的水平,从而加速电解质在正极表面的氧化分解。

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