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Jahn-Teller and Pseudo Jahn-Teller Effects: Influences on the Electronic Structures of Small Transition, Main Group and Mixed Metal Clusters

机译:Jahn-Teller和Pseudo Jahn-Teller效果:对小型过渡,主要组和混合金属集群的电子结构的影响

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摘要

The present review article focuses on the impact of the Jahn-Teller effect (JTE) including hidden JTE and pseudo JTE on the ground and low-lying electronic structures of small transition, main group, and mixed metal clusters. The discussions are based on the results acquired from the quantum chemical analysis involving complete active space multiconfiguration self-consistent field (CASMCSCF or CASSCF) together with multireference singles and doubles configuration interaction (MRSDCI) theories. Related computational results from density functional (DFT) and coupled cluster (CC) theories, and the available experimental evidences on the JT-distorted structures are also included for comparative analysis. The role of the relativistic effects on several heavy metal clusters is discussed in detail, since these effects could lead to either enhancement or the quenching of the JTE. The final section of the review manifests the JT-distortion of several mixed metal clusters of icosahedral symmetry and they are explained through a much simpler shell structure (jellium) model.
机译:本综述文章侧重于JAHN-TAKEER效应(JTE)在地面和小型过渡,主组和混合金属集群的地面和低洼电子结构上的影响。讨论基于涉及完整的有效空间多组件自洽域(CasmCSCF或Casscf)的量子化学分析所获得的结果,以及多引用单打和双打配置交互(MRSDCI)理论。相关的计算结果来自密度官能(DFT)和耦合簇(CC)理论,以及JT扭曲结构的可用实验证据也包括在内的比较分析。详细讨论了相对论效应对几种重金属簇的作用,因为这些效果可能导致提高和JTE的淬火。审查的最后一部分表明了ICOSAHEDRAL对称性的几种混合金属簇的JT - 失真,并通过更简单的壳结构(Jellium)模型来解释。

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