Li Zhihang, Tate Joseph A, Noble Adam
School of Chemistry, University of Bristol, Bristol BS8 1TS, U.K.
Syngenta, Jealott's Hill International Research Centre, Bracknell RG42 6EY, U.K.
J Am Chem Soc. 2024 Oct 2;146(39):26616-26621. doi: 10.1021/jacs.4c10093. Epub 2024 Sep 20.
Ketyl radicals are valuable reactive intermediates because they allow carbonyl chemistry to be extended beyond traditional electrophilic reactivity through simple single-electron reduction to a nucleophilic radical. However, this pathway is challenging due to the large negative reduction potentials of carbonyls, thus requiring highly reducing conditions. Herein, we describe the development of an alternative strategy to access ketyl radicals from aldehydes, which avoids the reduction pathway by instead proceeding via single-electron oxidation and desulfination of α-hydroxy sulfinates. These redox-active aldehyde adducts are generated through the addition of sulfoxylate (SO) to aldehydes and possess low oxidation potentials, thereby facilitating ketyl radical formation and circumventing the need for strongly reducing conditions. We demonstrate the application of this sulfoxylate-mediated ketyl radical formation in ketyl-olefin coupling reactions.
羰游基是有价值的反应中间体,因为通过简单的单电子还原为亲核自由基,它们能使羰基化学超越传统的亲电反应活性。然而,由于羰基的还原电位具有很大的负值,这条途径具有挑战性,因此需要高度还原的条件。在此,我们描述了一种从醛类获取羰游基的替代策略的开发,该策略通过α-羟基亚磺酸盐的单电子氧化和脱硫反应,而非还原途径来实现。这些具有氧化还原活性的醛加合物是通过将亚磺酸盐(SO)加成到醛类中生成的,并且具有低氧化电位,从而促进羰游基的形成,避免了对强还原条件的需求。我们展示了这种亚磺酸盐介导的羰游基形成在羰游基-烯烃偶联反应中的应用。