Wallevik Sunna Ó, Bjornsson Ragnar, Kvaran Agúst, Jonsdottir Sigridur, Arnason Ingvar, Belyakov Alexander V, Kern Thomas, Hassler Karl
Science Institute, University of Iceland , Dunhaga 3, IS-107 Reykjavik, Iceland.
Saint-Petersburg State Technological Institute , Saint-Petersburg 190030, Russia.
Organometallics. 2013 Dec 9;32(23):6996-7005. doi: 10.1021/om4005725. Epub 2013 Nov 15.
The molecular structures of axial and equatorial conformers of -CHSiHX (X = Cl, Br, I) as well as the thermodynamic equilibrium between these species was investigated by means of gas electron diffraction, dynamic nuclear magnetic resonance, temperature-dependent Raman spectroscopy, and quantum-chemical calculations applying CCSD(T), MP2, and DFT methods. According to the experimental and calculated results, all three compounds exist as a mixture of two chair conformers of the six-membered ring. The two chair forms of symmetry differ in the axial or equatorial position of the X atom. In all cases, the axial conformer is preferred over the equatorial one. When the experimental uncertainties are taken into account, all of the experimental and theoretical results for the conformational energy ( - ) fit into a remarkably narrow range of -0.50 ± 0.15 kcal mol. It was found by NBO analysis that the axial conformers are unfavorable in terms of steric energy and conjugation effects and that they are stabilized mainly by electrostatic interactions. The conformational energies for CHX and -CHSiHX (X = F, Cl, Br, I, At) were compared using CCSD(T) calculations. In both series, fluorine is predicted to have a lower conformational preference (cyclohexane equatorial, silacyclohexane axial) than Cl, Br, and I. It is predicted that astatine would behave very similarly to Cl, Br, and I within each series.
通过气体电子衍射、动态核磁共振、变温拉曼光谱以及应用CCSD(T)、MP2和DFT方法的量子化学计算,研究了-CHSiHX(X = Cl、Br、I)的轴向和赤道构象异构体的分子结构以及这些物种之间的热力学平衡。根据实验和计算结果,所有三种化合物均以六元环的两种椅式构象异构体的混合物形式存在。两种具有对称性的椅式形式在X原子的轴向或赤道位置上有所不同。在所有情况下,轴向构象异构体比赤道构象异构体更受青睐。考虑到实验不确定性,构象能(-)的所有实验和理论结果都落在-0.50±0.15 kcal mol的非常窄的范围内。通过NBO分析发现,轴向构象异构体在空间能和共轭效应方面不利,并且它们主要通过静电相互作用得以稳定。使用CCSD(T)计算比较了CHX和-CHSiHX(X = F、Cl、Br、I、At)的构象能。在这两个系列中,预测氟的构象偏好(环己烷赤道式、硅环己烷轴向式)低于Cl、Br和I。预计砹在每个系列中的行为将与Cl, Br和I非常相似。