MacDiarmid Institute for Advanced Materials and Nanotechnology, Industrial Research Ltd, Lower Hutt 5040, New Zealand.
Phys Chem Chem Phys. 2012 Jul 28;14(28):9912-22. doi: 10.1039/c2cp41078h. Epub 2012 Jun 19.
The electronic structure of known cluster compounds with a cage-like icosahedral Ga(12) centre is studied by first-principles theoretical methods, based on density functional theory. We consider these hollow metalloid nanostructures in the context of the polymorphism of the bulk, and identify a close relation to the α phase of gallium. This previously unrecognised connection is established using the electron localisation function, which reveals the ubiquitous presence of radially-pointing covalent bonds around the Ga(12) centre--analogous to the covalent bonds between buckled deltahedral planes in α-Ga. Furthermore, we find prominent superatom shell structure in these clusters, despite their hollow icosahedral motif and the presence of covalent bonds. The exact nature of the electronic shell structure is contrasted with simple electron shell models based on jellium, and we demonstrate how the interplay between gallium dimerisation, ligand- and crystal-field effects can alter the splitting of the partially filled 1F shell. Finally, in the unique compound where the Ga(12) centre is bridged by six phosphorus ligands, the electronic structure most closely resembles that of δ-Ga and there are no well-defined superatom orbitals. The results of this comprehensive study bring new insights into the nature of chemical bonding in metalloid gallium compounds and the relation to bulk gallium metal, and they may also guide the development of more general models for ligand-protected clusters.
基于密度泛函理论的第一性原理理论方法研究了具有笼状二十面体 Ga(12)中心的已知团簇化合物的电子结构。我们在体相多晶型的背景下考虑这些中空类金属纳米结构,并确定与 Ga 的 α 相有密切关系。使用电子局域函数建立了以前未被识别的连接,该函数揭示了 Ga(12)中心周围存在指向径向的共价键,类似于 α-Ga 中折叠的三角面之间的共价键。此外,尽管这些团簇具有中空的二十面体图案和共价键,但它们仍具有明显的超原子壳层结构。这些簇的电子壳层结构的精确性质与基于类氢模型的简单电子壳层模型形成对比,我们展示了 Ga 二聚体化、配体和晶体场效应之间的相互作用如何改变部分填充的 1F 壳层的分裂。最后,在 Ga(12)中心由六个磷配体桥接的独特化合物中,电子结构最类似于 δ-Ga,并且没有明确的超原子轨道。这项全面研究的结果为类金属 Ga 化合物中的化学键性质及其与块状 Ga 金属的关系提供了新的见解,并且可能还为配体保护的团簇的更通用模型提供了指导。