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Mechanisms of syn-Insertion of Alkynes and Allenes into Gold-Silicon Bonds: A Comprehensive Experimental/Theoretical Study

机译:炔烃和丙二烯向硅-金键中顺式插入的机理:全面的实验/理论研究

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摘要

A detailed mechanistic study is reported for the syn-insertion of alkynes and allenes in the Au-Si bonds of complexes (R_3P)Au-SiR'Ph_2 (R = Ph, Me and R' = t-Bu, Ph). Kinetic experiments indicate that (ⅰ) the reaction is first-orde in alkyne and gold silyi complex and (ⅱ) it requires a rather low enthalpy of activation and a relatively large ne ative entropy of activation [ΔH~‡ = 13.7 (±1.6) kcal·mol~(-1) and AS~‡ = -32.0 (±5.0) cal·mor~(-1)·K~(-1) for the reaction of (Ph_3P)Au-Si(t-Bu)Ph_2 with methyl propiolate], in line with a bimolecular associative transformation. The different mechanistic pathways have been explored by DFT calculations. Accordingly, the reaction is found to proceed via a two-step inner-sphere mechanism: (ⅰ) first, the alkyne coordinates to the gold silyl complex to form a π-complex; (ⅱ) the subsequent migratory insertion step is rate determining and occurs in a concerted manner. Provided dispersion effects are taken into account (B97D functional), the enthalpy of activation estimated theoretically [ΔH~‡ = 11.5 kcal·mol~(-1)] is in good agreement with that measured experimentally. The influence of the π substrate (methyl propiolate, dimethyl acetylene dicarboxylate, phenyl acetylene, ethyl 2,3-butadienoate) has been analyzed theoretically, and the regioselectivity of the insertion has been rationalized. In particular, the unexpected selectivity observed experimentally with the allene is shown to result from the insertion of the terminal nonactivated C=C double bond into the Au-Si bond of (Ph_3P)Au-SiPh_3, followed by an original isomerization (Au/Si exchange process). This study provides unambiguous evidence for coordination-insertion at gold and thereby strongly supports the possible occurrence of inner-sphere mechanisms during the functionalization of alkynes and allenes.
机译:据报道,在配合物(R_3P)Au-SiR'Ph_2(R = Ph,Me和R'= t-Bu,Ph)的Au-Si键中,炔烃和丙二烯共插入的详细机理研究。动力学实验表明(ⅰ)该反应在炔烃和金硅烷基络合物中为一阶反应,并且(ⅱ)需要较低的活化焓和较大的活化熵[ΔH〜‡= 13.7(±1.6)] (Ph_3P)Au-Si(t-Bu)Ph_2反应的kcal·mol〜(-1)和AS〜‡= -32.0(±5.0)cal·mor〜(-1)·K〜(-1)丙酸甲酯],符合双分子缔合转化。通过DFT计算已经探索了不同的机理途径。因此,发现反应是通过两步内球机理进行的:(1)首先,炔烃配位至金甲硅烷基络合物以形成π络合物; (ⅱ)随后的迁移插入步骤是速率确定的,并且以协调的方式发生。如果考虑到分散效应(B97D官能团),理论上估计的活化焓[ΔH〜‡= 11.5 kcal·mol〜(-1)]与实验测得的焓良好吻合。从理论上分析了π底物(丙酸甲酯,乙炔二甲酸二甲酯,苯基乙炔,2,3-丁二烯酸乙酯)的影响,并合理化了插入的区域选择性。特别地,实验表明,用丙二烯观察到的出乎意料的选择性是由于将末端未活化的C = C双键插入(Ph_3P)Au-SiPh_3的Au-Si键中,然后进行了原始异构化(Au / Si交换过程)。这项研究为在金上进行配位插入提供了明确的证据,从而有力地支持了炔烃和丙二烯官能化过程中可能发生的内球机理。

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  • 来源
    《Journal of the American Chemical Society》 |2014年第29期|10373-10382|共10页
  • 作者单位

    Universite de Toulouse, UPS, Laboratoire Heterochimie Fondamentale Appliquee, 118 route de Narbonne, F-31062 Toulouse, France,CNRS, LHFA UMR 5069, F-31062 Toulouse, France ,Universite de Toulouse, UPS, Structure Federative Toulousaine en Chimie Moleculaire, FR2599, 118 Route de Narbonne, F-31062 Toulouse, France;

    Institut Pluridisciplinaire de Recherche sur l'Environnement et les Materiaux (UMR 5254), Equipe Chimie Physique, Universite de Pau et des Pays de l'Adour, Helioparc, 2 Avenue du President Angot, 64053 Pau cedex 09, France,Departamento de Quimica Fisica, Universidade de Vigo, Facultade de Quimica Lagoas-Marcosende s, 36310 Vigo, Galicia, Spain,Universite de Toulouse, UPS, Structure Federative Toulousaine en Chimie Moleculaire, FR2599, 118 Route de Narbonne, F-31062 Toulouse, France;

    Universite de Toulouse, UPS, Structure Federative Toulousaine en Chimie Moleculaire, FR2599, 118 Route de Narbonne, F-31062 Toulouse, France;

    Institut Pluridisciplinaire de Recherche sur l'Environnement et les Materiaux (UMR 5254), Equipe Chimie Physique, Universite de Pau et des Pays de l'Adour, Helioparc, 2 Avenue du President Angot, 64053 Pau cedex 09, France;

    Universite de Toulouse, UPS, Laboratoire Heterochimie Fondamentale Appliquee, 118 route de Narbonne, F-31062 Toulouse, France,CNRS, LHFA UMR 5069, F-31062 Toulouse, France;

    Universite de Toulouse, UPS, Laboratoire Heterochimie Fondamentale Appliquee, 118 route de Narbonne, F-31062 Toulouse, France,CNRS, LHFA UMR 5069, F-31062 Toulouse, France;

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  • 入库时间 2022-08-18 03:11:07

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