首页> 外文期刊>Organometallics >Structure of trimethyldioxorhenium, (CH3)(3)ReO2 as studied by spectroscopic methods, gas electron diffraction, and density functional theory calculations. Tilted methyl groups: Agostic C-H center dot center dot center dot M interactions or bent M-C
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Structure of trimethyldioxorhenium, (CH3)(3)ReO2 as studied by spectroscopic methods, gas electron diffraction, and density functional theory calculations. Tilted methyl groups: Agostic C-H center dot center dot center dot M interactions or bent M-C

机译:三甲基二氧杂hen,(CH3)(3)ReO2的结构,通过光谱方法,气体电子衍射和密度泛函理论计算进行了研究。倾斜的甲基:C-H中心点中心点中心点中间点M相互作用或弯曲的M-C

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The structural model of the trimethyldioxorhenium molecule, Me3ReO2 (1), has been revised on the basis of analysis of its H-1, C-13, and O-17 NMR and vibrational spectra and of its gas electron diffraction (GED) pattern. The results are consistent with the molecular symmetry C-s; in the new model both oxo ligands together with one methyl group are located in the equatorial plane of a distorted trigonal bipyramid. Structure optimization by density functional theory (DFT) calculations and least-squares refinement to the GED data yield the valence angles (calc/expt; eq = equatorial; ax = axial; av = average) angle CeqReO = 118.0/118.5(10)degrees and angle CeqReCax = 74.3/73.5(11)degrees. The pseudoaxial Re-C bond distance is found to be shorter than the equatorial one, viz., Re-C-ax = 2.130/2.122(6) Angstrom versus Re-C-eq = 2.193/ 2.199(22) Angstrom, and Re=O-av = 1.739/1.703(3) Angstrom. It is suggested that the distortion from trigonal bipyramidal to edge-bridged tetrahedral coordination geometry is driven by the need for the axial C atoms to achieve optimal overlap with both the d(z)2 and d(yz) orbitals on the Re atom. The DFT calculations indicate that the axial methyl groups are tilted in such a manner that the angle ReCH valence angles in the ReC3 plane are reduced to 100.8 degrees. It is suggested that this tilting is due in part to bent Re-C-ax bonds and in part to weak C-H ... Re agostic interactions. [References: 47]
机译:三甲基二氧杂鎓分子Me3ReO2(1)的结构模型已在对其H-1,C-13和O-17 NMR和振动光谱以及其气体电子衍射(GED)模式的分析的基础上进行了修订。结果与分子对称C-s一致;在新模型中,两个羰基配体和一个甲基都位于扭曲的三角双锥体的赤道平面内。通过密度泛函理论(DFT)计算对结构进行优化,并对GED数据进行最小二乘法修正,得出价角(calc / expt; eq =赤道; ax =轴向; av =平均)角CeqReO = 118.0 / 118.5(10)度角度CeqReCax = 74.3 / 73.5(11)度。发现伪轴Re-C键距短于赤道键距,即Re-C-ax = 2.130 / 2.122(6)埃与Re-C-eq = 2.193 / 2.199(22)埃和Re = O-av = 1.739 / 1.703(3)埃。建议从三角形双锥体到边缘桥联的四面体配位几何形状的变形是由对轴向C原子的要求来实现的,以使其与Re原子上的d(z)2和d(yz)轨道实现最佳重叠。 DFT计算表明,轴向甲基以如下方式倾斜:使ReC3平面中的角度ReCH价价角减小至100.8度。有人认为,这种倾斜部分是由于弯曲的Re-C-ax键,部分是由于C-H ... Re疲劳相互作用弱。 [参考:47]

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