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氧化镍的镍2p X射线光电子能谱中的主峰和卫星峰特征

Main and Satellite Features in the Ni 2p XPS of NiO.

作者信息

Bagus Paul S, Nelin Connie J, Brundle C Richard, Crist B Vincent, Ilton Eugene S, Lahiri Nabajit, Rosso Kevin M

机构信息

Department of Chemistry, University of North Texas, Denton, Texas 76203-5017, United States.

Consultant, Austin, Texas 78730, United States.

出版信息

Inorg Chem. 2022 Nov 14;61(45):18077-18094. doi: 10.1021/acs.inorgchem.2c02549. Epub 2022 Nov 2.

Abstract

The origin and assignment of the complex main and satellite X-ray photoelectron spectroscopy (XPS) features of the cations in ionic compounds have been the subject of extensive theoretical studies using different methods. There is agreement that within a molecular orbital model, one needs to take into account different types of configurations. Specifically, those where a core electron is removed, but no other configuration changes are made and those where in addition to ionization, there are also shake or charge-transfer changes to the ionic configuration. However, there are strong disagreements about the assignment of XPS features to these configurations. The present work is directed toward resolving the origin of main and satellite features for the Ni 2p XPS of NiO based on ab initio molecular orbital wave functions (WFs) for a cluster model of NiO. A major problem in earlier ab initio XPS studies of ionic compounds has been the use of a common set of orbitals that was not able to properly describe all the ionic configurations that contribute to the full XPS spectra. This is resolved in the present work by using orbitals that are optimized for averages of the occupations of the different configurations that contribute to the XPS. The approach of using state-averaged (SA) orbitals is validated through comparisons between different averages and through use of higher order excitations in the WFs for the ionic states. It represents a major extension of our earlier work on the main and satellite features of the Fe 2p XPS of FeO and proves the reliability and the generality of the assignments of the character and origin of the different features of the XPS obtained with orbitals optimized for SAs. These molecular orbital methods permit the characterization of the ionic states in terms of the importance of shake excitations and of the coupling of ionization of 2p and 2p spin-orbit split sub shells. The work lays the foundation for definitive assignments of the character of main and satellite XPS features and points to their origin in the electronic structure of the material.

摘要

离子化合物中阳离子复杂的主、卫星X射线光电子能谱(XPS)特征的起源和归属一直是使用不同方法进行广泛理论研究的主题。人们一致认为,在分子轨道模型中,需要考虑不同类型的构型。具体来说,包括那些一个内层电子被移除但没有其他构型变化的情况,以及除了电离之外,还有对离子构型的振动或电荷转移变化的情况。然而,对于将XPS特征归属于这些构型存在很大分歧。目前的工作旨在基于NiO团簇模型的从头算分子轨道波函数(WFs)来解析NiO的Ni 2p XPS主、卫星特征的起源。早期对离子化合物的从头算XPS研究中的一个主要问题是使用了一组不能正确描述所有对完整XPS光谱有贡献的离子构型的通用轨道。在目前的工作中,通过使用针对对XPS有贡献的不同构型的占据平均值进行优化的轨道来解决这个问题。通过不同平均值之间的比较以及在离子态的WFs中使用高阶激发,验证了使用态平均(SA)轨道的方法。它代表了我们早期关于FeO的Fe 2p XPS主、卫星特征工作的重大扩展,并证明了用针对SA优化的轨道获得的XPS不同特征的特征和起源归属的可靠性和普遍性。这些分子轨道方法允许根据振动激发的重要性以及2p和2p自旋轨道分裂子壳层电离的耦合来表征离子态。这项工作为明确确定主、卫星XPS特征的特征奠定了基础,并指出了它们在材料电子结构中的起源。

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