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烯烃的分子间自由基碳氨化反应。

Intermolecular radical carboamination of alkenes.

机构信息

Organisch-Chemisches Institut, Westfälische Wilhelms-Universität, Corrensstraße 40, 48149 Münster, Germany.

出版信息

Chem Soc Rev. 2020 Mar 21;49(6):1790-1811. doi: 10.1039/c9cs00692c. Epub 2020 Feb 14.

Abstract

Vicinal alkene carboamination is a highly efficient and practical synthetic strategy for the straightforward preparation of diverse and valuable amine derivatives starting from simple compounds. During the last decade that approach has found continuous research interests and various practical methods have been developed using transition-metal catalysis. Driven by the renaissance of synthetic radical chemistry, intermolecular radical alkene carboamination comprising a C-C bond and a C-N bond forming step has been intensively investigated recently culminating in novel strategies and improved protocols which complement existing methodologies. Radical alkene carboamination can be achieved via three different reaction modes. Such cascades can proceed through N-radical addition to an alkene with subsequent C-C bond formation leading to 2,1-carboamination products. Alternatively, the C-C bond can be installed prior to the C-N bond via initial C-radical addition to the alkene with subsequent β-amination resulting in 1,2-carboamination. The third mode comprises initial single electron oxidation of the alkene to the corresponding alkene radical cation that gets trapped by an N-nucleophile and the cascade is terminated by radical C-C bond formation. In this review, the three different conceptual approaches will be discussed and examples from the recent literature will be presented. Further, the reader will get insights into the mechanism of the different transformations.

摘要

偕二烯碳氨基化是一种高效实用的合成策略,可从简单化合物出发,直接制备各种有价值的胺衍生物。在过去的十年中,这种方法引起了持续的研究兴趣,并开发了各种使用过渡金属催化的实用方法。受合成自由基化学复兴的推动,最近人们对包含 C-C 键和 C-N 键形成步骤的分子间自由基烯碳氨基化进行了深入研究,最终提出了新的策略和改进的方案,补充了现有方法。自由基烯碳氨基化可以通过三种不同的反应模式来实现。这些级联反应可以通过 N-自由基加成到烯烃上,随后进行 C-C 键形成,得到 2,1-碳氨基化产物。或者,可以通过初始 C-自由基加成到烯烃上,随后进行β-氨基化,在 C-N 键之前安装 C-C 键,得到 1,2-碳氨基化产物。第三种模式包括烯烃的初始单电子氧化,生成相应的烯基自由基阳离子,然后被 N-亲核试剂捕获,级联反应通过自由基 C-C 键形成终止。在这篇综述中,将讨论这三种不同的概念方法,并展示来自最近文献的示例。此外,读者将深入了解不同转化的机制。

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