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On the structural landscape in endohedral silicon and germanium clusters, M@Si-12 and M@Ge-12

机译:关于内面硅和锗团簇的结构态势,M @ Si-12和M @ Ge-12

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Amongst the endohedral clusters of the tetrel elements, M@E-n, the 12-vertex species are unique in that three completely different geometries, the icosahedron (I-h, [Ni@Pb-12](2-)), the hexagonal prism (HP, Cr@Si-12) and the bicapped pentagonal prism (BPP, [Ru@Ge-12](3-)) have been identified in stable molecules. We explore here the origins of this structural diversity by comparing stability patterns across isovalent and isoelectronic series, M@Si-12, M@Ge-12 and [M@Ge-12](3-). The BPP structure dominates the structural landscape for high valence electron counts (57-60) while the HP has a rather narrower window of stability around the 54-56 count. Moreover the preference for an HP structure is unique to silicon: in no case is a rigorously D-6h-symmetric structure the global minimum for M@Ge-12. Distortions from the high-symmetry limits, where present, can be traced to degeneracies or near-degeneracies in the frontier orbital domains. In all cases the structure adopted is that which maximizes the delocalization of electron density between the metal and the cluster cage, such that both components attain stable electronic configurations.
机译:在Tetrel元素的内膜簇M @ En中,12个顶点物种是独特的,因为三个完全不同的几何形状,二十面体(Ih,[Ni @ Pb-12](2-)),六角棱镜(HP ,Cr @ Si-12)和二等五角形棱镜(BPP,[Ru @ Ge-12](3-))已在稳定分子中鉴定出来。我们在这里通过比较跨等价和等电子系列,M @ Si-12,M @ Ge-12和[M @ Ge-12](3-)的稳定性模式来探索这种结构多样性的起源。对于高价电子数(57-60),BPP结构占主导地位,而HP在54-56数附近具有较窄的稳定性窗口。此外,对HP结构的偏爱是硅所独有的:在任何情况下,严格的D-6h对称结构都不是M @ Ge-12的整体最小值。高对称极限的失真(如果存在)可以追溯到边界轨道域中的简并性或近简并性。在所有情况下,所采用的结构都是使金属和簇笼之间电子密度的离域最大化的结构,从而使两个组件均获得稳定的电子构型。

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