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探究[(H(t)Ac)3(μ2-H)6]、[(H(t)Th)3(μ2-H)6]、[(H(t)Pa)3(μ2-H)6] 簇的芳香性。

Probing the aromaticity of the [(H(t)Ac)3(μ2-H)6], [(H(t)Th)3(μ2-H)6],(+), and [(H(t)Pa)3(μ2-H)6] clusters.

机构信息

Departamento de Ciencias Químicas, Universidad Andres Bello, Avenida República 275, Santiago, Chile.

出版信息

J Chem Phys. 2011 Sep 14;135(10):104506. doi: 10.1063/1.3632056.

Abstract

In this study we report about the aromaticity of the prototypical [(H(t)Ac)(3)(μ(2)-H)(6)], (H(t)Th)(3)(μ(2)-H)(6), and [(H(t)Pa)(3)(μ(2)-H)(6)] clusters via two magnetic criteria: nucleus-independent chemical shifts (NICS) and the magnetically induced current density. All-electron density functional theory calculations were carried out using the two-component zeroth-order regular approach and the four-component Dirac-Coulomb Hamiltonian, including scalar and spin-orbit relativistic effects. Four-component current density maps and the integration of induced ring-current susceptibilities clearly show that the clusters [(H(t)Ac)(3)(μ(2)-H)(6)] and (H(t)Th)(3)(μ(2)-H)(6) are non-aromatic whereas [(H(t)Pa)(3)(μ(2)-H)(6)] is anti-aromatic. However, for the thorium cluster we find a discrepancy between the current density plots and the classification through the NICS index. Our results also demonstrate the increasing influence of f orbitals, on bonding and magnetic properties, with increasing atomic number in these clusters. We think that the enhanced electron mobility in [(H(t)Pa)(3)(μ(2)-H)(6)] is due the significant 5f character of its valence shell. Also the participation of f orbitals in bonding is the reason why the protactinium cluster has the shortest bond lengths of the three clusters. This study provides another example showing that the magnetically induced current density approach can give more reliable results than the NICS index.

摘要

在这项研究中,我们通过两个磁性标准:核独立化学位移(NICS)和磁诱导电流密度,报告了原型[(H(t)Ac)(3)(μ(2)-H)(6)]、[(H(t)Th)(3)(μ(2)-H)(6)]+(+)和[(H(t)Pa)(3)(μ(2)-H)(6)]簇的芳香性。使用两分量零阶正则近似和包括标量和自旋轨道相对论效应的四分量 Dirac-Coulomb 哈密顿量,进行了全电子密度泛函理论计算。四分量电流密度图和感应环电流磁化率的积分清楚地表明,簇[(H(t)Ac)(3)(μ(2)-H)(6)]和[(H(t)Th)(3)(μ(2)-H)(6)]+(+)是非芳香的,而[(H(t)Pa)(3)(μ(2)-H)(6)]是反芳香的。然而,对于钍簇,我们发现电流密度图和通过 NICS 指数进行分类之间存在差异。我们的结果还表明,随着原子序数的增加,这些簇中 f 轨道对键合和磁性性质的影响越来越大。我们认为,[(H(t)Pa)(3)(μ(2)-H)(6)]中电子迁移率的增强是由于其价壳层具有显著的 5f 特征。此外,f 轨道参与键合也是为什么钫簇具有这三个簇中最短键长的原因。这项研究提供了另一个例子,表明磁诱导电流密度方法可以比 NICS 指数提供更可靠的结果。

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