Peng Qiupeng, Gogoi Achyut Ranjan, Rentería-Gómez Ángel, Gutierrez Osvaldo, Scheidt Karl A
Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, IL 60208, USA.
Department of Chemistry, Texas A&M University, College Station, Texas 77843, USA.
Chem. 2023 Jul 13;9(7):1983-1993. doi: 10.1016/j.chempr.2023.04.011. Epub 2023 May 10.
The combination of activated carboxylic acids and alcohols/amines to access esters and amides, respectively, is a cornerstone of organic chemistry and has been well developed over the past century. These dehydrations are extensively used in medicinal chemistry and natural product synthesis due to the prevalence of these functional groups in bioactive molecules. Here, we report a divergent process from the expected ester/amide outcomes through a light-induced coupling of activated carboxylic acids and alcohols/amines to efficiently prepare α-hydroxy/amino ketones or β-ketophosphonates via single-electron chemistry. A phosphorus linchpin strategy allows for the combination of these simple reagents through an intramolecular triplet state radical process, thereby enabling new carbon-carbon bond formation.
分别将活化羧酸与醇/胺结合以制备酯和酰胺,是有机化学的基石,并且在过去一个世纪中得到了充分发展。由于这些官能团在生物活性分子中普遍存在,这些脱水反应在药物化学和天然产物合成中被广泛应用。在此,我们报道了一种与预期的酯/酰胺产物不同的过程,即通过光诱导活化羧酸与醇/胺的偶联,经由单电子化学高效制备α-羟基/氨基酮或β-酮膦酸酯。磷关键策略允许通过分子内三重态自由基过程将这些简单试剂结合起来,从而实现新的碳-碳键形成。