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A DFT Study on Selected Physical Organic Aspects of the Fischer Carbene Intermediates [(M(CO)4(C(OMe)Me)]

机译:对食品碳切菜中间体的所选物理有机方面的DFT研究[(M(CO)4(C(OME)ME)]

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Fischer carbenes are important starting materials for C-C bond formation via coupling reactions between carbene and wide variety of substituted alkenes or alkynes. This DFT study shed light on unique fundamental organic/organometallic aspects for the C(OMe)Me carbene in the free form and in case of bonding with M(CO)4(M= Cr, Mo, W). The data illustrate that the structures of the title intermediates include a unique structure stabilizing intramolecular M…C-H interaction (agostic interaction). This conclusion was made based on calculated NMR data (for carbon and hydrogen), structural parameters, energy calculations of conformers (C-C conformation), selected IR stretching frequencies (C-O, C-C, and C-H), and atomic charges. The agostic interaction is most efficient in case of chromium and in general is described as an overlap between the σ-bond electron pair of C-H with an empty d-orbital of the metal. These characterized examples are new addition to the orbital interaction theory.
机译:Fischer Carbenes是C-C键形成的重要原料,通过Carbene和各种取代的烯烃或炔烃之间的偶联反应。这种DFT研究揭示了C(OME)Carbene以自由形式的独特基础有机/有机金属方面,并且在与M(CO)4键合的情况下(M = Cr,Mo,W)。数据说明标题中间体的结构包括稳定分子内M的独特结构,C-H相互作用(蠕动相互作用)。该结论是基于计算的NMR数据(用于碳和氢),结构参数,整形剂(C-C构象)的能量计算,选择的IR拉伸频率(C-O,C-C和C-H)和原子电荷。在铬的情况下,术后相互作用是最有效的,并且通常被描述为σ-粘合电子对C-H之间的重叠,具有空的金属的空D-orbital。这些特征示例是轨道交互理论的新增功能。

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