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本征手性16电子超原子络合物[Au20(PP3)4](4+)的电子结构与光学性质

Electronic structure and optical properties of the intrinsically chiral 16-electron superatom complex [Au20(PP3)4](4+).

作者信息

Knoppe Stefan, Lehtovaara Lauri, Häkkinen Hannu

机构信息

Molecular Imaging and Photonics, Department of Chemistry, KU Leuven , Celestijnenlaan 200D, 3001 Heverlee, Belgium.

出版信息

J Phys Chem A. 2014 Jun 12;118(23):4214-21. doi: 10.1021/jp5033959. Epub 2014 Jun 3.

Abstract

The recently solved crystal structure of the [Au20(PP3)4]Cl4 cluster (PP3: tris(2-(diphenylphophino)ethyl)phosphine) is examined using density functional theory (DFT). The Au20 core of the cluster is intrinsically chiral by the arrangement of the Au atoms. This is in contrast to the chirality of thiolate-protected gold clusters, in which the protecting Au-thiolate units are arranged in chiral patterns on achiral cores. We interpret the electronic structure of the [Au20(PP3)4]Cl4 cluster in terms of the superatom complex model. The 16-electron cluster cannot be interpreted as a dimer of 8-electron clusters (which are magic). Instead, a superatomic electron configuration of 1S(2) 1P(6) 1D(6) 2S(2) is found. The 2S band is strongly stabilized, and the 1D states are nondegenerate with a large gap. Ligand protection of the (Au20)(4+) core leads to a significant increase of the HL-gap and thus stabilization. We also tested a charge of +II, which would give rise to an 18-electron superatom complex. Our results indicate that the 16-electron cluster is indeed more stable. We also investigate the optical properties of the cluster. The experimental absorption spectrum is well-reproduced by time-dependent DFT. Prominent transitions are analyzed by time-dependent density-functional perturbation theory. The intrinsic chirality of the cluster is compared to that of Au38(SR)24. We observe that the chiral arrangement of the protecting Au-SR units in Au38(SR)24 has very strong influence on the strength of the CD spectra, whereas phosphine protection in the title compound does not.

摘要

利用密度泛函理论(DFT)对最近解析出的[Au20(PP3)4]Cl4团簇(PP3:三(2-(二苯基膦基)乙基)膦)的晶体结构进行了研究。该团簇的Au20核通过Au原子的排列本质上具有手性。这与硫醇盐保护的金团簇的手性形成对比,在硫醇盐保护的金团簇中,保护的Au-硫醇盐单元在手性核心上以手性模式排列。我们根据超原子复合模型解释了[Au20(PP3)4]Cl4团簇的电子结构。这个16电子团簇不能被解释为8电子团簇(具有幻数)的二聚体。相反,发现了一种超原子电子构型1S(2) 1P(6) 1D(6) 2S(2)。2S能带强烈稳定,1D态是非简并的且有很大的能隙。(Au20)(4+)核的配体保护导致HL能隙显著增加,从而实现稳定。我们还测试了+II电荷,这将产生一个18电子的超原子复合物。我们的结果表明16电子团簇确实更稳定。我们还研究了该团簇的光学性质。实验吸收光谱通过含时DFT得到了很好的再现。通过含时密度泛函微扰理论分析了显著的跃迁。将该团簇的固有手性与Au38(SR)24的手性进行了比较。我们观察到Au38(SR)24中保护的Au-SR单元的手性排列对CD光谱的强度有非常强烈的影响,而标题化合物中的膦保护则没有。

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