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钯催化酰胺通过碳氮裂解的铃木-宫浦偶联反应:酰胺N-C键活化的通用策略

Palladium-catalyzed Suzuki-Miyaura coupling of amides by carbon-nitrogen cleavage: general strategy for amide N-C bond activation.

作者信息

Meng Guangrong, Szostak Michal

机构信息

Department of Chemistry, Rutgers University, 73 Warren Street, Newark, NJ 07102, USA.

出版信息

Org Biomol Chem. 2016 Jun 15;14(24):5690-707. doi: 10.1039/c6ob00084c.

Abstract

The first palladium-catalyzed Suzuki-Miyaura cross-coupling of amides with boronic acids for the synthesis of ketones by sterically-controlled N-C bond activation is reported. The transformation is characterized by operational simplicity using bench-stable, commercial reagents and catalysts, and a broad substrate scope, including substrates with electron-donating and withdrawing groups on both coupling partners, steric-hindrance, heterocycles, halides, esters and ketones. The scope and limitations are presented in the synthesis of >60 functionalized ketones. Mechanistic studies provide insight into the catalytic cycle of the cross-coupling, including the first experimental evidence for Pd insertion into the amide N-C bond. The synthetic utility is showcased by a gram-scale cross-coupling and cross-coupling at room temperature. Most importantly, this process provides a blueprint for the development of a plethora of metal catalyzed reactions of typically inert amide bonds via acyl-metal intermediates. A unified strategy for amide bond activation to enable metal insertion into N-C amide bond is outlined ().

摘要

报道了首例通过空间控制的N-C键活化,钯催化酰胺与硼酸进行铃木-宫浦交叉偶联反应合成酮。该转化反应具有操作简便的特点,使用的是易于储存的市售试剂和催化剂,底物范围广泛,包括在两个偶联伙伴上带有供电子和吸电子基团的底物、空间位阻较大的底物、杂环化合物、卤化物、酯和酮。在60多种官能化酮的合成中展示了该反应的适用范围和局限性。机理研究深入了解了交叉偶联的催化循环,包括钯插入酰胺N-C键的首个实验证据。通过克级规模的交叉偶联反应以及室温下的交叉偶联反应展示了该反应的合成实用性。最重要的是,该过程为通过酰基金属中间体开发大量典型惰性酰胺键的金属催化反应提供了蓝图。概述了一种统一的酰胺键活化策略,以实现金属插入N-C酰胺键()。

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