Chipanina Nina N, Shainyan Bagrat A, Oznobikhina Larisa P, Lazareva Nataliya F
A.E. Favorsky Irkutsk Institute of Chemistry, Siberian Division of the Russian Academy of Sciences, 1 Favorsky Street, 664033, Irkutsk, Russian Federation.
Chemphyschem. 2024 Sep 16;25(18):e202400410. doi: 10.1002/cphc.202400410. Epub 2024 Jul 14.
The comparison of the results of theoretical calculations of (O-Si) chelates of N-silylmethylated amides and ureas with the axial chlorine or fluorine atom at silicon to the data of X-ray analysis of related compounds revealed the formation of covalent O-Si tetrel bonds (TB) or noncovalent O⋅⋅⋅Si tetrel bonds (NTB). The nature of the formed tetrel bond depends on the substituents at silicon and the polarity of the medium. The competition between the intramolecular TB and intermolecular hydrogen bonds (HB) with proton donors depends on the center of basicity involved in the formation of HB, which could be either oxygen or halogen. The hydrogen bonding can result in changing the nature of the tetrel bonds from covalent to noncovalent and vice versa by varying their lengths and energies. The O-Si bond energies estimated by QTAIM analysis of N-[(chlorodimethylsilyl)methyl]-N-methylacetamide and its H-complexes vary within the range of 7.2 and 12 kcal/mol in gas and solution, respectively, and correlate with the O-Si bond lengths.
将含轴向氯或氟原子的硅上的N-硅基甲基化酰胺和脲的(O-Si)螯合物的理论计算结果与相关化合物的X射线分析数据进行比较,结果表明形成了共价O-Si 四元键(TB)或非共价O⋅⋅⋅Si四元键(NTB)。所形成的四元键的性质取决于硅上的取代基和介质的极性。分子内TB与质子供体形成的分子间氢键(HB)之间的竞争取决于参与形成HB的碱性中心,该中心可以是氧或卤素。通过改变氢键的长度和能量,氢键可以导致四元键的性质从共价变为非共价,反之亦然。通过对N-[(氯二甲基硅基)甲基]-N-甲基乙酰胺及其H-配合物进行QTAIM分析估计,在气相和溶液中,O-Si键能分别在7.2至12 kcal/mol范围内变化,并且与O-Si键长相关。