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(二甲基氨基甲基)三氟硅烷,Me2NCH2SiF3——氨基甲基硅烷中α-效应的一个模型。

(Dimethylaminomethyl)trifluorosilane, Me2NCH2SiF3--a model for the alpha-effect in aminomethylsilanes.

作者信息

Mitzel Norbert W, Vojinović Krunoslav, Foerster Thomas, Robertson Heather E, Borisenko Konstantin B, Rankin David W H

机构信息

Institut für Anorganische und Analytische Chemie, Westfälische Wilhelms-Universität Münster, Corrensstrasse 30, 48149 Münster, Germany.

出版信息

Chemistry. 2005 Aug 19;11(17):5114-25. doi: 10.1002/chem.200500359.

Abstract

F3SiCH2NMe2 was prepared as a model for the investigation of the nature of the alpha-effect in alpha-aminosilanes, by fluorination of Cl3SiCH2NMe2 with SbF3. Under less mild conditions Si--C bond cleavage was also observed, leading to the double adduct F4Si(Me2NCH2SiF3)2, which was characterised by a crystal structure analysis showing that the central SiF4 unit is connected to Me2NCH2SiF3 via SiN dative bonds and FSi contacts. F3SiCH2NMe2 was characterised by multinuclear NMR spectroscopy (1H, 13C, 15N, 19F and 29Si), gas-phase IR spectroscopy and mass spectrometry. It is a dimer in the crystal (X-ray diffraction, crystal grown in situ), held together by two Si--N dative bonds. In solution and in the gas phase the compound is monomeric. The structure of the free molecule, determined by gas-phase electron diffraction, showed that, in contrast to former postulates, there are no attractive SiN interactions. Ab initio calculations have been carried out to explain the nature of the bonding. F3SiCH2NMe2 has an extremely flat bending potential for the Si-C-N angle; the high degree of charge transfer from the Si to the N atoms which occurs upon closing the Si-C-N angle is in the opposite direction to that expected for a dative bond. The topology of the electron density of F3SiCH2NMe2 was analysed. Solvent simulation calculations have shown virtually no structural dependence on the medium surrounding the molecule. The earlier postulate of Si-->N dative bonds in SiCN systems is discussed critically in light of the new results.

摘要

通过用SbF₃对Cl₃SiCH₂NMe₂进行氟化反应,制备了F₃SiCH₂NMe₂,作为研究α-氨基硅烷中α-效应本质的模型。在不太温和的条件下,还观察到Si—C键的断裂,生成双加合物F₄Si(Me₂NCH₂SiF₃)₂,通过晶体结构分析对其进行了表征,结果表明中心SiF₄单元通过Si—N配位键和F—Si接触与Me₂NCH₂SiF₃相连。通过多核NMR光谱(¹H、¹³C、¹⁵N、¹⁹F和²⁹Si)、气相红外光谱和质谱对F₃SiCH₂NMe₂进行了表征。它在晶体中是二聚体(X射线衍射,原位生长晶体),通过两个Si—N配位键结合在一起。在溶液和气相中,该化合物是单体。通过气相电子衍射确定的自由分子结构表明,与之前的假设相反,不存在有吸引力的Si—N相互作用。已进行从头算计算来解释键合的本质。F₃SiCH₂NMe₂的Si—C—N角具有极其平坦的弯曲势能;在闭合Si—C—N角时发生的从Si到N原子的高度电荷转移与配位键预期的方向相反。分析了F₃SiCH₂NMe₂的电子密度拓扑结构。溶剂模拟计算表明,分子结构几乎不依赖于其周围的介质。根据新结果对SiCN体系中Si→N配位键的早期假设进行了批判性讨论。

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