结合能
波函数
化学
X射线光电子能谱
原子物理学
价(化学)
航程(航空)
电场
有效核电荷
电荷(物理)
化学键
粘结长度
分子物理学
电子相关
电子
功能(生物学)
紧密结合
价电子
工作职能
度量(数据仓库)
领域(数学)
相关函数(量子场论)
电子结构
势能
电子亲和性(数据页)
电荷密度
计算化学
化学物理
无机化合物
电子定域函数
键能
作者
Paul S Bagus,Carmen Sousa,Francesc Illas
标识
DOI:10.1088/1361-648x/ac4dc0
摘要
Abstract The O(1s) and C(1s) XPS core-level binding energies. BEs, have been studied as a function of the C–O internuclear distance for a large range of distances. The BE( r ) for both BEs show considerable variation over the distances studied which is, however, different for the O(1s) and C(1s) BEs. The origin of the dependence on C–O distance is established and shown to involve more than the electric field generated because of the charge separation within CO being C + q and O − q . Furthermore, the BE( r ) is shown to be different for Hartree–Fock and correlated wavefunctions indicating that the BE( r ) can provide evidence of how electron correlation modifies the valence charge distribution. The difference between the O(1s) and C(1s) BEs is examined and it is proposed that this difference can be used as a measure of the accuracy of theoretically predicted BEs. It is believed that the features found for CO may be representative for the BE variations with geometry for other systems; an effect that has been mostly overlooked.
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