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Structural Features of Silatranes and Germatranes

机译:Silatranes和Germatranes的结构特征

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In stabilization of the endo configuration of silatranes and germatranes,a major role is played not only by the Si (or Ge)and N atoms,but also by oxygen and other atoms of the atrane core,which is manifested in molecular orbital parameters.Calculation of the system of interacting methyltrimethoxysilane and trimethylamine shows that the energy of the system grows as the distance between the Si and N atoms is decreased from 5 to 2 A.The Si-N interaction in methylsilatrane,according to the calculations and precision X-ray diffraction studies,is the interaction of filled electronic shells and is electrostatic in nature.Analysis of the thermodynamic functions of formation of 1-methyl-and 1-hydroxysilatranes and-germatranes reveals an increase in the enthalpy and the decisive contribution of the entropy factors to stabilization of the reaction products.A ~1H NMR study of ethylgermatrane in aqueous solution revealed its equilibrium with the hydro-lyzed form.The transition state in the first step of hydrolysis of methyl-and hydroxysilatranes and-germatranes was studied by methods of quantum chemistry (AMI,PM3;basis sets STO-3G,6-31G,6-31G,6-31G;B3LYP method).
机译:在稳定silatranes和germandranes的内部构型中,主要作用不仅在于Si(或Ge)和N原子,而且还取决于atrane核心的氧和其他原子,这在分子轨道参数中得到体现。甲基三甲氧基硅烷与三甲胺相互作用的体系的结构图表明,随着Si和N原子之间的距离从5 A减小到2 A,体系的能量不断增加。根据计算和精确X射线分析,甲基硅氮烷中的Si-N相互作用衍射研究是填充的电子壳的相互作用,本质上是静电的。对1-甲基和1-羟基硅氧杂环戊烷和germatranes形成的热力学函数的分析表明,焓增加,并且熵因子对乙基香叶烷在水溶液中的〜1H NMR研究表明其与水解形式的平衡。采用量子化学方法(AMI,PM3;基本组STO-3G,6-31G,6-31G,6-31G; B3LYP方法)研究了甲基-和羟基-丝氨纶和Germatranes的水解过程。

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