Ying Linkun, Chen Yao, Song Xiangrui, Song Zengqiang
School of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou, Zhejiang 325035, China.
J Org Chem. 2023 Oct 6;88(19):13894-13907. doi: 10.1021/acs.joc.3c01504. Epub 2023 Sep 13.
A novel and practical method for the preparation of difunctionalized quinolines, bearing a thiocarbamate group at the C3-position and an acyloxyl group at the C4-position, and quinolinonyl thiocarbamates from quinolinones, tetraalkylthiuram disulfides, and hypervalent iodine(III) reagents has been developed via thiocarbamation of quinolinones at room temperature. The present method features mild reaction conditions, good tolerance with diverse functional groups, and a wide substrate scope, providing the desired products in good yields. Furthermore, this transformation is easy to scale up, and the desired products can be readily converted to heterocyclic thiols. Most importantly, this protocol allows for the late-stage thiocarbamation of bioactive compounds. Mechanistic studies show that radicals may be involved in this transformation, water is probably the oxygen source of thiocarbamates, and difunctionalized quinolines are possibly formed via nucleophilic attack of carboxylic anions, which derive from hypervalent iodine(III) reagents.
已开发出一种新颖且实用的方法,可通过在室温下对喹啉酮进行硫代氨基甲酰化反应,从喹啉酮、四烷基二硫化秋兰姆和高价碘(III)试剂制备在C3位带有硫代氨基甲酰基和在C4位带有酰氧基的双官能化喹啉以及喹啉基硫代氨基甲酸盐。本方法具有反应条件温和、对多种官能团耐受性良好、底物范围广的特点,能以良好的产率提供所需产物。此外,这种转化易于放大规模,且所需产物可轻松转化为杂环硫醇。最重要的是,该方案允许对生物活性化合物进行后期硫代氨基甲酰化反应。机理研究表明,自由基可能参与了这种转化,水可能是硫代氨基甲酸盐的氧源,双官能化喹啉可能是通过高价碘(III)试剂衍生的羧酸根阴离子的亲核攻击形成的。