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Isolation of bis(copper) key intermediates in Cu-catalyzed azide-alkyne click reaction

机译:铜催化的叠氮化物-炔烃点击反应中双(铜)关键中间体的分离

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摘要

The copper-catalyzed 1,3-dipolar cycloaddition of an azide to a terminal alkyne (CuAAC) is one of the most popular chemical transformations, with applications ranging from material to life sciences. However, despite many mechanistic studies, direct observation of key components of the catalytic cycle is still missing. Initially, mononuclear species were thought to be the active catalysts, but later on, dinuclear complexes came to the front. We report the isolation of both a previously postulated π,σ-bis(copper) acetylide and a hitherto never-mentioned bis(metallated) triazole complex. We also demonstrate that although mono- and bis-copper complexes promote the CuAAC reaction, the dinuclear species are involved in the kinetically favored pathway.
机译:叠氮化物在末端炔烃(CuAAC)上的铜催化1,3-偶极环加成反应是最流行的化学转化之一,其应用范围从材料到生命科学。但是,尽管进行了许多机理研究,但仍缺少对催化循环关键成分的直接观察。最初,单核物质被认为是活性催化剂,但后来,双核络合物走到了前面。我们报道了既定的π,σ-双(铜)乙炔化物和迄今从未提及的双(金属化)三唑配合物的分离。我们还证明,尽管单铜和双铜配合物可促进CuAAC反应,但双核物质参与了动力学上有利的途径。

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