Yamashita Yasuhiro, Kobayashi Shū
Department of Chemistry, School of Science, The University of Tokyo, Hongo, Bunkyo-ku, Tokyo, Japan, 113-0033.
Chem Asian J. 2024 Jun 17;19(12):e202400319. doi: 10.1002/asia.202400319. Epub 2024 May 14.
Alkylation reactions are fundamental carbon-carbon bond-forming reactions in synthetic organic chemistry. Among them, intermolecular α-alkylation reactions of carbonyl compounds with alkenes are important because they are more atom-economical than the equivalent processes using alkyl halides. However, intermolecular reactions with nonactivated alkenes such as 1-hexene, which can allow the use of a wide range of valuable substrates, have been considered to be very challenging for a long time. In this review, radical-mediated intermolecular α-alkylation reactions of carbonyl compounds with nonactivated alkenes are discussed. The examples are grouped into three types of reactions: peroxide-mediated reactions, metal-oxidant-mediated reactions, and photoactivated reactions. Photoredox-catalyzed alkylation reactions under visible-light irradiation are discussed as a particularly promising recent hot topic. This review provides brief history and new prospects on the α-alkylation process with nonactivated alkenes using α-carbonyl radical species.
烷基化反应是合成有机化学中基本的碳-碳键形成反应。其中,羰基化合物与烯烃的分子间α-烷基化反应很重要,因为它们比使用卤代烃的等效过程更具原子经济性。然而,与非活化烯烃(如1-己烯)的分子间反应,虽然可以使用多种有价值的底物,但长期以来一直被认为极具挑战性。在这篇综述中,将讨论自由基介导的羰基化合物与非活化烯烃的分子间α-烷基化反应。这些例子分为三种反应类型:过氧化物介导的反应、金属氧化剂介导的反应和光活化反应。可见光照射下的光氧化还原催化烷基化反应作为一个特别有前景的近期热门话题也将被讨论。这篇综述提供了使用α-羰基自由基物种与非活化烯烃进行α-烷基化过程的简要历史和新前景。