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Ionic versus metallic bonding in AlnNam and AlnMgm (m <= 3, n + m <= 15) clusters

机译:在Alnnam和Alnmgm中的离子与金属粘合(m <= 3,n + m <= 15)簇

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First principles electronic structure studies on the ground state geometries, stability, and the electronic structure of AlnNam and AlnMgm (m <= 3, n + m <= 15) clusters have been carried out to examine the nature of bonding between Na or Mg and Al. Identifying whether the bonding is ionic or metallic in bulk materials is typically straightforward; however, in small clusters where quantum confinement is important, the nature of bonding may become unclear. We have performed a critical analysis of the bonding in these bimetallic clusters using charge analysis, electrical dipole moments, hybridization of the atomic orbitals, the Laplacian of the charge density at the bond critical points, and the change in the bonding energy between neutral and anionic forms of the cluster. For NanAlm clusters, we find that the Na binding is primarily ionic, while the bonding in AlnMgm is primarily metallic. We find that the Mulliken population of the 3p orbital of Na and Mg can provide a rapid assessment of the nature of bonding. We also find that the Hirshfeld charge and dipole moments are effective indicators, when placed in context. We found that the Laplacian of the charge density at the bond critical points can be misleading in identifying whether the bonding is ionic or metallic in small clusters. Published by AIP Publishing.
机译:已经进行了第一原理的电子结构研究对地面的几何形状,稳定性和Alnmgm的电子结构(m <= 3,n + m <= 15)簇,以检查Na或mg之间的键合的性质al。鉴定键合是离子或金属散装材料的是直接的;然而,在量子限制很重要的小簇中,键合的性质可能变得不明朗。我们使用电荷分析,电偶极矩,原子轨道杂交,原子轨道的杂交,债券关键点处的电荷密度的拉普拉斯,以及中性和阴离子之间的粘合能量的变化,对这些双金属簇的键合的关键分析。中性和阴离子之间的粘合能量的变化集群的形式。对于纳米簇,我们发现Na结合主要是离子,而Alnmgm中的键合主要是金属。我们发现,NA和MG的3P轨道的Mulliken人口可以快速评估粘合性质。我们还发现,当放置在上下文时,Hirshfeld充电和偶极子项是有效的指标。我们发现,在识别键临界点处的电荷密度的拉普拉斯在识别粘合是在小簇中是否是离子或金属的误导性。通过AIP发布发布。

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