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Probing the Validity of the Zintl−Klemm Concept for Alkaline-Metal Copper Tellurides by Means of Quantum-Chemical Techniques

机译:用量子化学技术探究Zintl-Klemm概念对碱性金属碲化铜的有效性

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摘要

Understanding the nature of bonding in solid-state materials is of great interest for their designs, because the bonding nature influences the structural preferences and chemical as well as physical properties of solids. In the cases of tellurides, the distributions of valence-electrons are typically described by applying the Zintl−Klemm concept. Yet, do these Zintl−Klemm treatments provide adequate pictures that help us understanding the bonding nature in tellurides? To answer this question, we followed up with quantum-chemical examinations on the electronic structures and the bonding nature of three alkaline-metal copper tellurides, i.e., NaCu Te , K Cu Te , and K Cu Te . In doing so, we accordingly probed the validity of the Zintl−Klemm concept for these ternary tellurides, based on analyses of the respective projected crystal orbital Hamilton populations (−pCOHP) and Mulliken as well as Löwdin charges. Since all of the inspected tellurides are expected to comprise Cu−Cu interactions, we also paid particular attention to the possible presence of closed-shell interactions.
机译:了解固态材料中的键合性质对于其设计非常重要,因为键合性质会影响固体的结构偏好以及化学和物理性质。在碲化物的情况下,价电子的分布通常通过应用Zintl-Klemm概念来描述。但是,这些Zintl-Klemm处理是否提供了足够的图像来帮助我们理解碲化物中的键合性质?为了回答这个问题,我们进行了量子化学检查,研究了三种碱金属铜碲化物NaCu Te,K Cu Te和K Cu Te的电子结构和键合性质。在此过程中,我们根据对各自的投影晶体轨道哈密顿族群(-pCOHP)和Mulliken以及Löwdin电荷的分析,探究了Zintl-Klemm概念对于这些三元碲化物的有效性。由于预期所有被检查的碲化物都包含Cu-Cu相互作用,因此我们也特别注意了闭壳相互作用的可能存在。

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