Bonding properties of molecular cerium oxides tuned by the 4f-block from ab initio perspective.

Ziyong Chen, J. Yang
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引用次数: 4

Abstract

Probing chemical bonding in molecules containing lanthanide elements is of theoretical interest, yet it is computationally challenging because of the large valence space, relativistic effects, and considerable electron correlation. We report a high-level ab initio study that quantifies the many-body nature of Ce-O bonding with the coordination environment of the Ce center and particularly the roles of the 4f orbitals. The growing significance of the overlap between Ce 4f and O 2p orbitals with the increasing coordination of Ce atoms enhances Ce-O bond covalency and in return directs the molecular geometry. Upon partial reduction from neutral to anionic ceria, the excessive electrons populate the Ce-centered localized 4f orbital. The interplay between the admixture and localization of the 4f-block dually modulates bonding patterns of cerium oxide molecules, underlying the importance of many-body interactions between ligands and various lanthanide elements.
由4f-嵌段调整的铈氧化物分子的键合性质。
探测含有镧系元素的分子中的化学键具有理论意义,但由于价空间大、相对论效应和相当大的电子相关性,它在计算上具有挑战性。我们报告了一项高水平的从头计算研究,量化了Ce中心配位环境下Ce- o键的多体性质,特别是4f轨道的作用。随着Ce原子配位的增加,ce4f和o2p轨道之间的重叠越来越重要,从而增强了Ce-O键的共价,从而指导了分子的几何形状。当中性铈部分还原为阴离子铈时,多余的电子占据ce中心的局域4f轨道。4f嵌段的混合和定位之间的相互作用双重调节了氧化铈分子的键合模式,揭示了配体与各种镧系元素之间多体相互作用的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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