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最近从脒合成杂环的方法——一种金属催化的C-H官能团化反应。

Recent approaches for the synthesis of heterocycles from amidines a metal catalyzed C-H functionalization reaction.

作者信息

Zuo Youpeng, Zuo Pengfei, Liu Meijun, Wang Xiaoqing, Du Jun, Li Xiaoling, Zhang Pinghua, Xu Zhenhua

机构信息

School of Chemistry and Chemical Engineering, Suzhou University, Suzhou, Anhui 234000, People's Republic of China.

Kunshan Customs, Kunshan, Jiangsu 215300, People's Republic of China.

出版信息

Org Biomol Chem. 2024 Jun 26;22(25):5014-5031. doi: 10.1039/d4ob00420e.

Abstract

Transition metal catalyzed C-H bond activation has become one of the most important tools for constructing new chemical bonds. Introducing directing groups to the substrates is the key to a successful reaction, these directing groups can also be further transformed in the reaction. Amidines with their unique structure and reactivity are ideal substrates for transition metal-catalyzed C-H transformations. This review describes the major advances and mechanistic investigations of the C-H activation/annulation tandem reactions of amidines until early 2024, focusing on metal-catalyzed C-H activation of amidines with unsaturated compounds, such as alkynes, ketone, vinylene carbonate, cyclopropanols and their derivatives. Meanwhile this manuscript also explores the reaction of amidines with different carbene precursors, for example diazo compounds, azide, triazoles, pyriodotriazoles, and sulfoxonium ylides as well as their own C-H bond activation/cyclization reactions. A bright outlook is provided at the end of the manuscript.

摘要

过渡金属催化的C-H键活化已成为构建新化学键最重要的工具之一。将导向基团引入底物是反应成功的关键,这些导向基团在反应中也可进一步转化。脒类化合物因其独特的结构和反应活性,是过渡金属催化C-H转化的理想底物。本综述描述了截至2024年初脒类化合物C-H活化/环化串联反应的主要进展和机理研究,重点关注金属催化脒类化合物与炔烃、酮、碳酸亚乙烯酯、环丙醇及其衍生物等不饱和化合物的C-H活化反应。同时,本文还探讨了脒类化合物与不同卡宾前体的反应,例如重氮化合物、叠氮化物、三唑、吡啶并三唑和亚砜叶立德,以及它们自身的C-H键活化/环化反应。本文结尾给出了光明的前景展望。

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