Department of Chemistry and FQRNT Center for Green Chemistry and Catalysis, McGill University 801 Sherbrooke St. W., Montreal, Quebec H3A 0B8, Canada.
Chem Commun (Camb). 2022 Sep 20;58(75):10572-10575. doi: 10.1039/d2cc03326g.
The classical Wolff-Kishner reduction plays a key role in organic synthesis to convert carbonyl functionalities into methylene groups; however, it generally requires harsh reaction conditions and a strategy with wider applications demands further development. Herein, a ruthenium-catalyzed Wolff-Kishner type reduction of ketones is developed with 31 examples under mild conditions. This strategy tolerates aryl and alkyl ketones with reactive functional groups including halogens, hydroxyls, carboxylic acid, unsaturated functional groups, and so on. The corresponding methylene products were obtained in 32% to 95% yields while using water or methanol as solvents.
经典的 Wolff-Kishner 还原在有机合成中起着关键作用,可将羰基官能团转化为亚甲基基团;然而,它通常需要苛刻的反应条件,因此需要进一步发展具有更广泛应用的策略。在此,开发了一种在温和条件下用钌催化的酮的 Wolff-Kishner 型还原反应,用 31 个实例进行了验证。该策略可以容忍具有反应性官能团的芳基和烷基酮,包括卤素、羟基、羧酸、不饱和官能团等。在使用水或甲醇作为溶剂时,相应的亚甲基产物的收率为 32%至 95%。