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首页> 外文期刊>Angewandte Chemie >Iron-Carbonyl-Catalyzed Redox-Neutral [4+2] Annulation of N-H Imines and Internal Alkynes by C-H Bond Activation
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Iron-Carbonyl-Catalyzed Redox-Neutral [4+2] Annulation of N-H Imines and Internal Alkynes by C-H Bond Activation

机译:铁羰基催化的氧化还原中性[4 + 2] N-H胺和内部炔烃的C-H键活化

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摘要

Stoichiometric C-H bond activation of arenes mediated by iron carbonyls was reported by Pauson as early as in 1965, yet the catalytic C-H transformations have not been developed. Herein, an iron-catalyzed annulation of N-H imines and internal alkynes to furnish cis-3,4-dihydroisoquinolines is described, and represents the first iron-carbonyl-catalyzed C-H activation reaction of arenes. Remarkablely, this is also the first redox-neutral [4+2] annulation of imines and alkynes proceeding by C-H activation. The reaction also features only cisstereoselectivity and excellent atom economy as neither base, nor external ligand, nor additive is required. Experimental and theoretical studies reveal an oxidative addition mechanism for C-H bond activation to afford a dinuclear ferracycle and a synergetic diiron-promoted H-transfer to the alkyne as the turnover-determining step.
机译:早在1965年,Pauson就报道了羰基铁介导的芳烃的化学计量C-H键活化,但催化C-H转化尚未开发。本文中,描述了铁催化的N-H亚胺和内部炔烃的环化以提供顺式3,4-二氢异喹啉,并且其代表芳烃的第一铁催化的羰基催化的C-H活化反应。值得注意的是,这也是通过C-H活化进行的亚胺和炔烃的首次氧化还原中性[4 + 2]环化反应。由于既不需要碱,也不需要外部配体,也不需要添加剂,因此该反应还仅具有顺式立体选择性和优异的原子经济性。实验和理论研究揭示了C-H键活化的氧化加成机理,以提供双核铁环和协同二价铁促进的H转移至炔烃,作为营业额确定步骤。

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