Zhang Lumin, Nagib David A
Department of Chemistry and Biochemistry, The Ohio State University, Columbus, OH, USA.
Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai, China.
Nat Chem. 2024 Jan;16(1):107-113. doi: 10.1038/s41557-023-01333-8. Epub 2023 Sep 11.
Carbonyls and alkenes are versatile functional groups, whose reactivities are cornerstones of organic synthesis. The selective combination of two carbonyls to form an alkene-a carbonyl cross-metathesis-would be a valuable tool for their exchange. Yet, this important synthetic challenge remains unsolved. Although alkene/alkene and alkene/carbonyl cross-metathesis reactions are known, there is a lack of analogous methods for deoxygenative cross-coupling of two carbonyl compounds. Here we report a pair of strategies for the cross-metathesis of unbiased carbonyls, allowing an aldehyde to be chemo- and stereoselectively combined with another aldehyde or ketone. These mild, catalytic methods are promoted by earth-abundant metal salts and enable rapid access to an unprecedentedly broad range of either Z- or E-alkenes by two distinct mechanisms-entailing transiently generated (1) carbenes and ylides (via Fe catalysis) or (2) doubly nucleophilic gem-di-metallics (via Cr catalysis).
羰基和烯烃是多功能官能团,其反应活性是有机合成的基石。将两个羰基选择性结合形成烯烃——羰基交叉复分解反应——将是它们进行交换的一个有价值的工具。然而,这一重要的合成挑战仍未解决。虽然烯烃/烯烃和烯烃/羰基交叉复分解反应是已知的,但缺乏用于两种羰基化合物脱氧交叉偶联的类似方法。在此,我们报道了一对用于无偏向羰基交叉复分解的策略,使醛能够与另一种醛或酮进行化学选择性和立体选择性结合。这些温和的催化方法由储量丰富的金属盐促进,并通过两种不同的机制能够快速获得前所未有的广泛范围的Z型或E型烯烃,这两种机制涉及瞬时生成的(1)卡宾和叶立德(通过铁催化)或(2)双亲核偕二金属化合物(通过铬催化)。