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密度泛函理论研究 Ge(n) 和 Ge(n)Ni(n=1-20)团簇的结构和稳定性:电子计数规则的有效性。

Density functional investigation of structure and stability of Ge(n) and Ge(n)Ni (n = 1-20) clusters: validity of the electron counting rule.

机构信息

Physics Group, Birla Institute of Technology and Science, Pilani-333031, Rajasthan, India.

出版信息

J Phys Chem A. 2010 Feb 4;114(4):1835-42. doi: 10.1021/jp905561n.

Abstract

Structure and electronic properties of neutral and cationic pure and Ni-doped Ge clusters containing 1-20 Ge atoms are calculated within the framework of linear combination of atomic orbitals density functional theory. It is found that in clusters containing more than 8 Ge atoms the Ni atom is absorbed endohedrally in the Ge cage. Relative stability of Ni-doped clusters at different sizes is studied by calculating their binding energy, embedding energy of a Ni atom in a Ge cluster, highest-occupied molecular orbital to lowest-unoccupied molecular orbital gap, and the second-order energy difference. Clusters having 20 valence electrons turn out to be relatively more stable in both the neutral and the cationic series. There is, infact, a sharp drop in IP as the valence electron count increases from 20 to 21, in agreement with predictions of shell models. Relevance of these results to the designing of Ge-based superatoms is discussed.

摘要

采用原子轨道线性组合密度泛函理论,计算了含 1-20 个 Ge 原子的中性和阳离子纯 Ge 团簇和 Ni 掺杂 Ge 团簇的结构和电子性质。发现,在含多于 8 个 Ge 原子的团簇中,Ni 原子被内包在 Ge 笼中。通过计算结合能、Ni 原子在 Ge 团簇中的嵌入能、最高占据分子轨道到最低未占据分子轨道能隙以及二阶能量差,研究了不同尺寸下 Ni 掺杂团簇的相对稳定性。在中性和阳离子系列中,具有 20 个价电子的团簇显示出相对更高的稳定性。实际上,随着价电子数从 20 增加到 21,IP 急剧下降,这与壳模型的预测一致。讨论了这些结果与基于 Ge 的超原子设计的相关性。

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