Mendizabal Fernando, Miranda-Rojas Sebastián, Barrientos Lorena
Departamento de Química, Facultad de Ciencias, Universidad de Chile, P.O. Box 653, Las Palmeras 3425, Ñuñoa, Santiago, Chile.
Phys Chem Chem Phys. 2015 Oct 21;17(39):26417-28. doi: 10.1039/c5cp04503g. Epub 2015 Sep 21.
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.
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。