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On the charge transfer between conventional cations: The structures of ternary oxides and chalcogenides of alkali metals

机译:关于常规阳离子之间的电荷转移:碱金属三元氧化物和硫属元素化物的结构

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The structures of ternary oxides and chalcogenides of alkali metals are dissected in light of the extended Zintl-Klemm concept. This model, which has been successfully extended to other compounds different to the Zintl phases, assumes that crystal structures can be better understood if the cation substructures are contemplated as Zintl polyanions. This implies the occurrence of charge transfer between cations, even if they are of the same kind. In this article, the charge transfer between cations is even more illustrative because the two alkali atoms have different electronegativity, so that the less electropositive alkali metal and the O/S atom always form skeletons characteristic of the group 14 elements. Thus, partial structures of the zincblende-, wurtzite-, PbO- and SrAl2-type are found in the oxides/sulfides. In this work, such an interpretation of the structures remains at a topological level. The analysis also shows that this interpretation is complementary to the model developed by Andersson and Hyde which contemplates the structures as the intergrowth of structural slabs of more simple compounds.
机译:根据扩展的Zintl-Klemm概念剖析了碱金属的三元氧化物和硫属元素化物的结构。该模型已成功扩展到其他与Zintl相不同的化合物,它假设如果将阳离子亚结构考虑为Zintl聚阴离子,则可以更好地理解晶体结构。这意味着即使阳离子种类相同,也会在阳离子之间发生电荷转移。在本文中,阳离子之间的电荷转移更具说明性,因为两个碱原子具有不同的电负性,因此,正电性较低的碱金属和O / S原子始终构成第14组元素的骨架特征。因此,在氧化物/硫化物中发现了闪锌矿型,纤锌矿型,PbO型和SrAl2型的部分结构。在这项工作中,对结构的这种解释仍处于拓扑级别。分析还表明,这种解释是对Andersson和Hyde开发的模型的补充,后者将结构视为更简单化合物的结构平板的共生。

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