Liu Xin, Portela Brandon S, Wiedenbeck Analiese, Chrisman Cameron H, Paton Robert S, Miyake Garret M
Department of Chemistry, Colorado State University, Center Ave, Fort Collins, CO 80523, United States.
Angew Chem Int Ed Engl. 2024 Dec 9;63(50):e202410928. doi: 10.1002/anie.202410928. Epub 2024 Oct 30.
Herein, we describe a new strategy for the carbonylation of alkyl halides with different nucleophiles to generate valuable carbonyl derivatives under visible light irradiation. This method is mild, robust, highly selective, and proceeds under metal-free conditions to prepare a range of structurally diverse esters and amides in good to excellent yields. In addition, we highlight the application of this activation strategy for C isotopic incorporation. We propose that the reaction proceeds by a photoinduced reduction to afford carbon-centered radicals from alkyl halides, which undergo subsequent single electron-oxidation to form a carbocationic intermediate. Carbon monoxide is trapped by the carbocation to generate an acylium cation, which can be attacked by a series of nucleophiles to give a range of carbonyl products.
在此,我们描述了一种新策略,即在可见光照射下,使卤代烃与不同亲核试剂进行羰基化反应,以生成有价值的羰基衍生物。该方法温和、稳健、选择性高,且在无金属条件下进行,能以良好至优异的产率制备一系列结构多样的酯和酰胺。此外,我们强调了这种活化策略在碳同位素掺入方面的应用。我们提出,该反应通过光诱导还原从卤代烃生成碳中心自由基,这些自由基随后进行单电子氧化形成碳正离子中间体。一氧化碳被碳正离子捕获生成酰鎓离子,该酰鎓离子可被一系列亲核试剂进攻,从而得到一系列羰基产物。