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堆叠式[Au(RN═CR')]配合物的分子结构与光学性质洞察

Insights into Molecular Structures and Optical Properties of Stacked [Au(RN═CR')] Complexes.

作者信息

Rabaâ Hassan, Omary Mohammad A, Taubert Stefan, Sundholm Dage

机构信息

Département de Chimie, ESCTM, University Ibn Tofail , P.O. Box 133, 14000 Kenitra, Morocco.

Department of Chemistry, University of North Texas , Denton 76203-5070, Texas, United States.

出版信息

Inorg Chem. 2018 Jan 16;57(2):718-730. doi: 10.1021/acs.inorgchem.7b02593. Epub 2017 Dec 26.

DOI:10.1021/acs.inorgchem.7b02593
PMID:29278329
Abstract

The molecular structure of stacked cyclic trinuclear gold(I) complexes [Au(RN═CR')], with n = 1-4, where R = H, methyl (Me), cyclopentyl (Pe), and phenyl (Ph) and R' = OH and methoxy (OMe) were studied computationally at the second-order Møller-Plesset (MP2) and density functional theory (DFT) levels of theory. At the DFT level, the aurophilic and dispersion interactions were accounted for by using the TPSS functional in combination with the semiempirical D3 correction. The structure optimizations yielded the lowest energy for a slided stacked structure of the [Au(HN═COH)] dimer, where monomers are slightly shifted relative to one another. At the MP2 level, the slided structure is 32 kJ/mol more stable than the staggered dimer structure, which in turn is energetically 11 kJ/mol below the eclipsed structure. The calculations show that aromatic ligands lead to a planar and prismatic structure of [Au(PhN═COMe)], whereas for [Au(PeN═COMe)], a chair conformation is obtained due to steric effects. Excitation energies were calculated for [Au(RN═CR')] and [Au(RN═CR')] with R = H, Me, and Pe and R' = OH and OMe at the time-dependent DFT level using the optimized molecular structures of the singlet ground state. To simulate the luminescence spectra, the lowest triplet excitation energy was also calculated for the molecular structure of the lowest triplet state. The calculated excitation energies of [Au(HN═COH)] and [Au(HN═COH)] are compared with values obtained at the approximate singles and doubles coupled cluster (CC2) and the second-order algebraic diagrammatic construction (ADC(2)) levels of theory. The calculated absorption and emission energies reproduce the experimental trends, with extremely large Stokes shifts. A solvoluminescence mechanism is also proposed.

摘要

研究了堆叠式环状三核金(I)配合物[Au(RN═CR')](n = 1 - 4,其中R = H、甲基(Me)、环戊基(Pe)和苯基(Ph),R' = OH和甲氧基(OMe))的分子结构,计算采用二阶Møller - Plesset(MP2)和密度泛函理论(DFT)理论水平。在DFT水平下,使用TPSS泛函结合半经验D3校正来考虑亲金相互作用和色散相互作用。结构优化得到了[Au(HN═COH)]二聚体滑动堆叠结构的最低能量,其中单体彼此略有偏移。在MP2水平下,滑动结构比交错二聚体结构稳定32 kJ/mol,而交错二聚体结构在能量上比重叠结构低11 kJ/mol。计算表明,芳香配体导致[Au(PhN═COMe)]呈平面棱柱结构,而对于[Au(PeN═COMe)],由于空间效应得到椅式构象。使用单重态基态的优化分子结构,在含时DFT水平下计算了R = H、Me和Pe且R' = OH和OMe的[Au(RN═CR')]和[Au(RN═CR')]的激发能。为了模拟发光光谱,还计算了最低三重态的分子结构的最低三重态激发能。将[Au(HN═COH)]和[Au(HN═COH)]的计算激发能与在近似单双耦合簇(CC2)和二阶代数图示构建(ADC(2))理论水平下获得的值进行比较。计算得到的吸收和发射能量再现了实验趋势,具有极大的斯托克斯位移。还提出了一种溶剂发光机制。

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