Sergentu Dumitru-Claudiu, Booth Corwin H, Autschbach Jochen
Department of Chemistry, University at Buffalo, State University of New York, Buffalo, NY, 14260-3000, USA.
Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California, 94720, USA.
Chemistry. 2021 May 3;27(25):7239-7251. doi: 10.1002/chem.202100145. Epub 2021 Mar 17.
The Ce L edge XAS spectra of CeO and cerocene [Ce(C H ) ] were calculated with relativistic ab-initio multireference wavefunction approaches capable of reproducing the observed spectra accurately. The study aims to resolve the decades-long puzzle regarding the relationship between the number and relative intensities of the XAS peaks and the 4f electron occupation in the ground state (GS) versus the core-excited states (ESs). CeO and cerocene exemplify the different roles of covalent bonding and wavefunction configurational composition in the observed intensity patterns. Good agreement is found between the calculated GS 4f-shell occupations and the value derived from XAS measurements using peak areas (n ). The identity of the two-peaked Ce L edge is fully rationalized from the perspective of the relaxed wavefunctions for the GS and core ESs. The states underlying the different peaks differ from each other in a surprisingly simple way that can be associated with 4f vs. 4f sub-configurations. Furthermore, part of one of the cerocene spectral peaks is associated with 4f sub-configurations. The pattern therefore reveals excited states that can be interpreted in terms of Ce IV and III oxidation numbers, as long assumed, with Ce II states additionally appearing in the cerocene spectrum. While this work demonstrates the rough accuracy of the conventional approach to determining n from Ce L -edge XAS, limitations are highlighted in terms of the ultimate accuracy of this approach and the potential of observing new types of excited states. The need to determine the sources of n by calculations, is stressed.
采用能够精确再现观测光谱的相对论性从头算多参考波函数方法,计算了CeO和茂铈[Ce(C₅H₅)₂]的Ce L边X射线吸收光谱(XAS)。该研究旨在解决长达数十年的谜题,即XAS峰的数量和相对强度与基态(GS)和芯激发态(ESs)中4f电子占据情况之间的关系。CeO和茂铈体现了共价键合和波函数构型组成在观测强度模式中的不同作用。计算得到的GS 4f壳层占据情况与使用峰面积从XAS测量中得出的值(n)之间发现了良好的一致性。从GS和芯ESs的弛豫波函数角度,完全解释了双峰Ce L边的特征。不同峰所对应的态以一种惊人的简单方式相互不同,这可以与4f与4f子构型相关联。此外,茂铈光谱峰之一的部分与4f子构型相关。因此,该模式揭示了激发态,正如长期以来所假设的,可以根据Ce IV和III氧化数来解释,同时在茂铈光谱中还额外出现了Ce II态。虽然这项工作证明了从Ce L边XAS确定n的传统方法的大致准确性,但也强调了该方法在最终准确性以及观测新型激发态潜力方面的局限性。强调了通过计算确定n来源的必要性。