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5-Fold symmetry in superatomic scandium clusters: exploiting favourable orbital overlap to sequester spin

机译:超级钪簇中的5倍对称性:利用有利的轨道重叠来解除旋转

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The geometries and electronic structures of icosahedral A(13)(c) (A = Sc, Y; C = 0, +/- 1, +/- 2) clusters have been determined at a range of multiplicities at each cluster charge, using density functional theory methods. These clusters demonstrate a complex electronic structure which provides insight into the anomalously high magnetic moment of icosahedral group 3 clusters and further contextualises the role of transition metals and d-electrons within the superatomic model. Embedded deeply within the density of states for these clusters are typical superatom orbitals which are populated up to the 2S level. Above the 2S-state there are three states of apparent F symmetry, which are preferentially singly occupied, followed by an abundance of approximately degenerate P-, G-, D- and F-states at the Fermi energy, which are at most singly occupied. In spite of apparent angular symmetry and a nodal structure reminiscent of superatomic orbitals these states are actually formed from preferential overlap of the valence d-orbitals of the cluster atoms. This analysis was further contextualised through analysis of the Sc-19 cluster, which shows a similar construction of Kohn-Sham states, but with the breaking of 5-fold symmetry along one of its Cartesian axes. Finally, this work clearly demonstrates the ability of d-electrons to give rise to superatomic orbitals is not just constrained by atomic species but also by the local environment of the atoms.
机译:icosaheLalea(13)(c)(a = sc,y; c = 0,+/- 1,+/- 2)集群的几何和电子结构已经在每个聚类充电的一系列多个中确定,使用密度函数理论方法。这些集群展示了一种复杂的电子结构,其提供了深入的ICOSaheDral组3集群的洞察力高磁矩,并进一步了解过渡金属和D-电子在超自眼模型内的作用。在这些集群的状态密度内深入嵌入典型的超大轨道,其填充到2S水平。在2S状态之上,有三种表观f对称的态,优选单独占据,然后在费米能量上进行大量堕落的p-,g-,d-和f状态,这是最单独占据的。尽管有明显的角度对称性和节点结构使得超细轨道上生成这些状态实际上由簇原子的价D-轨道的优先重叠形成。通过分析SC-19簇的分析进一步设计了该分析,其显示了Kohn-Sham状态的类似结构,而是沿着其笛卡尔轴中的一个打破5倍的对称性。最后,这项工作清楚地证明了D-Electron引起超声轨道的能力不仅仅是由原子物种约束,而且由原子的局部环境受到限制。

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