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高自旋锂簇中的成键:非核吸引子起着关键作用。

Bonding in the high spin lithium clusters: Non-nuclear attractors play a crucial role.

作者信息

Karachi Sara Sadat, Eskandari Kiamars

机构信息

Department of Chemistry, Isfahan University of Technology, Isfahan, Iran.

出版信息

J Comput Chem. 2023 Apr 5;44(9):962-968. doi: 10.1002/jcc.27056. Epub 2022 Dec 27.

Abstract

The bonding in lithium high-spin clusters contradicts the usual chemical bonding concept since there are no electron pairs between the atoms, and they are bound with parallel spin electrons. Quantum theory of atoms in molecules and interacting quantum atom analysis (IQA) were used to investigate the nature of bonding in the high-spin clusters. Our findings demonstrate that the non-nuclear attractors (NNAs) are an essential component of the high-spin lithium clusters and play a key role in keeping them stable. Based on IQA energy terms, an electrostatic destabilizing interaction between the lithium atoms works against the cluster formation. On the other hand, the interactions between lithium atoms and NNA basins are stabilizing and outweigh the lithium-lithium destabilizing effects. In fact, NNAs tend to draw lithium atoms together and stabilize the resulting cluster. The high-spin clusters of lithium can be regarded as electrostatically driven compounds since the electrostatic components are primarily responsible for the stabilizing interactions between NNAs and Li atoms. The only exception is Li , which lacks NNA and has a non-repellent lithium-lithium interaction. Indeed, in the Li , the interatomic electrostatic component is negligibly small, and the exchange-correlation term leads to a weak bonding interaction.

摘要

锂高自旋簇中的键合与通常的化学键合概念相矛盾,因为原子之间不存在电子对,它们是由平行自旋电子结合在一起的。采用分子中的原子量子理论和相互作用量子原子分析(IQA)来研究高自旋簇中的键合性质。我们的研究结果表明,非核吸引子(NNA)是高自旋锂簇的重要组成部分,在保持其稳定性方面起着关键作用。基于IQA能量项,锂原子之间的静电去稳定相互作用不利于簇的形成。另一方面,锂原子与NNA盆地之间的相互作用是稳定的,并且超过了锂-锂去稳定效应。事实上,NNA倾向于将锂原子拉到一起并使形成的簇稳定。锂的高自旋簇可以被视为静电驱动的化合物,因为静电成分主要负责NNA和锂原子之间的稳定相互作用。唯一的例外是Li,它缺乏NNA并且具有非排斥性的锂-锂相互作用。实际上,在Li中,原子间静电成分小到可以忽略不计,并且交换相关项导致弱的键合相互作用。

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