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小尺寸幻数硅团簇中的流动和芳香行为:Si(n)、Si(n)(1-)、Si(n)(2-)和Si(n)(1+)(n = 6, 10团簇)的全从头算研究

Fluxional and aromatic behavior in small magic silicon clusters: a full ab initio study of Si(n), Si(n) (1-), Si(n) (2-), and Si(n) (1+), n=6, 10 clusters.

作者信息

Zdetsis Aristides D

机构信息

Department of Physics, University of Patras, Patra, GR 26500, Greece.

出版信息

J Chem Phys. 2007 Jul 7;127(1):014314. doi: 10.1063/1.2746030.

DOI:10.1063/1.2746030
PMID:17627353
Abstract

The structural, electronic, vibrational, optical, magnetic, and aromatic characteristics of Si(n), Si(n) (1-), Si(n) (2-), and Si(n) (1+), clusters have been calculated very accurately with a variety of high level ab initio techniques. These calculations have been performed with the aim to clarify existing ambiguities in the literature and to bring up the fluxional and aromatic characteristics of these species. The fluxional behavior, according to earlier conjecture of the present author, could be connected to the magic property. In addition such behavior could also explain the existence of conflicting results. The ab initio techniques include quadratic configuration interaction, coupled cluster, and multireference second order perturbation theory, together with density functional theory ("static" and time dependent) with the hybrid B3LYP functional. Various high quality correlation-consistent basis sets, ranging from 2Z up to 5Z quality, were employed. It is demonstrated that Si(6) is fluxional, fluctuating around a symmetric D(4h) structure. Si(10) is also fluxional but to a lesser degree, in contrast to Si(10) (1-) anion which is highly fluxional. For both clusters, in full agreement with Wade's and Lipscomb's rules for deltahedral boranes, the corresponding dianions have higher symmetry (O(h) and D(4d), respectively) and lower energy than the neutral clusters. The aromatic behavior of Si(6) fits better to a mixed conflicting aromaticity picture. This type of aromatic and fluxional behavior has also been observed in stable "magic" carbon clusters as C(6) and carbon fullerenes such as C(20). The present results, which support possible connection of fluxional and magic properties, are in excellent agreement with experimental measurements of ionization energies, electron affinities, and vibrationally resolved photoelectron spectra.

摘要

利用多种高水平的从头算技术,已非常精确地计算出了Si(n)、Si(n)(1-)、Si(n)(2-)和Si(n)(1+)团簇的结构、电子、振动、光学、磁性和芳香性特征。进行这些计算的目的是澄清文献中现有的模糊之处,并揭示这些物种的流动和芳香特性。根据作者早期的推测,流动行为可能与幻数性质有关。此外,这种行为也可以解释相互矛盾的结果的存在。从头算技术包括二次组态相互作用、耦合簇和多参考二阶微扰理论,以及采用混合B3LYP泛函的密度泛函理论(“静态”和含时)。使用了各种高质量的相关一致基组,质量范围从2Z到5Z。结果表明,Si(6)是流动的,围绕对称的D(4h)结构波动。Si(10)也是流动的,但程度较小,与之形成对比的是Si(10)(1-)阴离子具有高度的流动性。对于这两种团簇,与Wade和Lipscomb关于三角面硼烷的规则完全一致,相应的双负离子具有比中性团簇更高的对称性(分别为O(h)和D(4d))和更低的能量。Si(6)的芳香行为更符合一种混合的、相互矛盾的芳香性图景。在稳定的“幻数”碳团簇如C(6)和碳富勒烯如C(20)中也观察到了这种类型的芳香和流动行为。目前的结果支持了流动和幻数性质之间可能的联系,与电离能、电子亲和能和振动分辨光电子能谱的实验测量结果非常吻合。

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