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含氟有机汞化合物与芳烃及金片段相互作用的理论研究

Theoretical study on interactions of fluorinated organomercurials with arene and gold fragments.

作者信息

Mendizabal Fernando, Miranda-Rojas Sebastián, Barrientos Lorena

机构信息

Departamento de Química, Facultad de Ciencias, Universidad de Chile, P.O. Box 653, Las Palmeras 3425, Ñuñoa, Santiago, Chile.

出版信息

Phys Chem Chem Phys. 2015 Oct 21;17(39):26417-28. doi: 10.1039/c5cp04503g. Epub 2015 Sep 21.

Abstract

The electronic structure and spectroscopic properties of [Hg(C6F5)2]2-{L}, [Hg3(o-C6F4)3]2·{L} (L = naphthalene, biphenyl, fluorene) and [Hg3(o-C6F4)3]{Au3(μ-C(OEt)=NC6H4CH3)3}n (n = 1, 2) adducts were studied at the HF, MP2, SCS-MP2, DFT and DFT-D3 levels. The intermolecular interactions among the fragments were analyzed using the levels of calculations proposed. The energy decomposition analysis at the TPSS-D3 level was used to define the dominant components of the interaction. The van der Waals interactions between mercury and arene (Hg-arene) were found to be the main short-range stability contribution in the [Hg(C6F5)2]2-{L} and [Hg3(o-C6F4)3]2·{L} complexes. At the MP2, SCS-MP2 and DFT-D3 levels, equilibrium Hg-C distances are between 360 and 310 pm. The pair-wise energies were found to be between 18.0 and 6.0 kJ mol(-1). In the [Hg3(o-C6F4)3]{Au3(μ-C(OEt)=NC6H4CH3)3}n (n = 1, 2) complexes the metallophilic intermolecular interaction is Hg-Au. Pair-wise energies of 85.7, 39.4, 78.1 and 57.9 kJ mol(-1) were found at the MP2, SCS-MP2, TPSS-D3 and PBE-D3 levels using the [Hg3(o-C6F4)3]{Au3(μ-C(OEt)=NC6H4CH3)3} model. The same trend is maintained for the [Hg3(o-C6F4)3]{Au3(μ-C(OEt)=NC6H4CH3)3}2 model: 73.4, 29.3, 70.6 and 61.3 kJ mol(-1) by MP2, SCS-MP2, TPSS-D3 and PBE-D3, respectively. The absorption spectra of these complexes were calculated using the single excitation time-dependent method at the TPSS-D3 level to validate the models against the experimental data.

摘要

在HF、MP2、SCS-MP2、DFT和DFT-D3水平上研究了[Hg(C6F5)2]2-{L}、[Hg3(o-C6F4)3]2·{L}(L = 萘、联苯、芴)和[Hg3(o-C6F4)3]{Au3(μ-C(OEt)=NC6H4CH3)3}n(n = 1, 2)加合物的电子结构和光谱性质。使用所提出的计算水平分析了各片段之间的分子间相互作用。在TPSS-D3水平上进行能量分解分析以确定相互作用的主要成分。发现汞与芳烃(Hg-芳烃)之间的范德华相互作用是[Hg(C6F5)2]2-{L}和[Hg3(o-C6F4)3]2·{L}配合物中主要的短程稳定性贡献。在MP2、SCS-MP2和DFT-D3水平上,平衡Hg-C距离在360至310 pm之间。成对能量在18.0至6.0 kJ mol(-1)之间。在[Hg3(o-C6F4)3]{Au3(μ-C(OEt)=NC6H4CH3)3}n(n = 1, 2)配合物中,亲金属分子间相互作用是Hg-Au。使用[Hg3(o-C6F4)3]{Au3(μ-C(OEt)=NC6H4CH3)3}模型在MP2、SCS-MP2、TPSS-D3和PBE-D3水平上发现成对能量分别为85.7、39.4、78.1和57.9 kJ mol(-1)。对于[Hg3(o-C6F4)3]{Au3(μ-C(OEt)=NC6H4CH3)3}2模型保持相同趋势:MP2、SCS-MP2、TPSS-D3和PBE-D3分别为73.4、29.3、70.6和61.3 kJ mol(-1)。使用单激发含时方法在TPSS-D3水平上计算了这些配合物的吸收光谱,以根据实验数据验证模型。

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