X射线光电子能谱
价(化学)
氧气
化学计量学
插层(化学)
从头算
锂(药物)
结合能
从头算量子化学方法
化学
离子
材料科学
分析化学(期刊)
化学物理
结晶学
物理化学
无机化学
化学工程
分子
原子物理学
内分泌学
有机化学
工程类
物理
医学
色谱法
作者
Laurence Dahéron,Hervé Martinez,Rémi Dedryvère,Isabelle Baraille,Michel Ménétrier,C. Denage,Claude Delmas,D. Gonbeau
摘要
XPS analyses (core peaks and valence spectra), under highly controlled conditions, have been carried out on stoichiometric LiCoO 2 and lithium-overstoichiometric Li 1+ y Co 1− y O 2− y ( y ∼ 0.05) materials, with significant changes observed in the oxygen peaks. Indeed, beside the component attributed to the O 2− anions of the crystalline network, a second one with variable intensity has been observed on the high binding energy side. With the support of ab initio biperiodical calculations on LiCoO 2, we propose that this peculiar oxygen signature is partially associated, for LiCoO 2, to undercoordinated oxygen atoms coming from (0 0 1) oriented surfaces. These surface oxygen anions are significantly less negative than the ones of the lattice. These results, in conjunction with SEM analyses for the lithium overstoichiometric material (as prepared and thermally treated), show that the presence of defects (oxygen vacancies) has to also be considered in the overstoichiometric case. As in battery material, all reactions (the intercalation but also the parasitic ones) occur through the surface; characterization of its crystallographic nature (as well as its electronic properties) is a key point to a better understanding and optimization of Li ion batteries.
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