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钯催化的 2-卤代联苯与异氰化物通过碳氢键的断裂的环偶联反应。

Palladium-catalyzed cyclocoupling of 2-halobiaryls with isocyanides via the cleavage of carbon-hydrogen bonds.

机构信息

Department of Applied Chemistry, Faculty of Engineering, Osaka University, Suita, Osaka 565-0871, Japan.

出版信息

J Org Chem. 2010 Jul 16;75(14):4835-40. doi: 10.1021/jo1009728.

Abstract

To demonstrate the utility of isocyanides in catalytic C-H bond functionalization reactions, a palladium-catalyzed cyclocoupling reaction of 2-halobiaryls with isocyanides was developed. The reaction afforded an array of fluorenone imine derivatives via the cleavage of a C-H bond at the 2'-position of 2-halobiaryls. The use of 2,6-disubstituted phenyl isocyanide was crucial for this catalytic cyclocoupling reaction to proceed. The reaction was applicable to heterocyclic and vinylic substrates, allowing the construction of a wide range of ring system. The large kinetic isotope effect observed (k(H)/k(D) = 5.3) indicates that C-H bond activation was the turnover-limiting step in this catalysis.

摘要

为了展示异腈在催化 C-H 键功能化反应中的实用性,开发了钯催化的 2-卤代联苯与异腈的环偶联反应。该反应通过断裂 2-卤代联苯的 2'-位的 C-H 键,生成了一系列芴酮亚胺衍生物。使用 2,6-二取代苯基异腈对于该催化环偶联反应的进行至关重要。该反应适用于杂环和乙烯基底物,允许构建广泛的环系。观察到的大动力学同位素效应(k(H)/k(D) = 5.3)表明 C-H 键活化是该催化中的限速步骤。

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