Ye Hexia, Zhao Xinyao, Fu Yajie, Liu Haibo, Li Junchen, Bi Xiaojing
State Key Laboratory of NBC Protection for Civilian, Beijing 102205, China.
School of Chemistry and Environmental Engineering, Sichuan University of Science &Engineering, 180 Xueyuan Street, Huixing Lu, Zigong 643000, China.
Molecules. 2024 Oct 10;29(20):4785. doi: 10.3390/molecules29204785.
A novel and controllable synthesis of thioacetals/thioketals and β-sulfanyl ketones mediated by the reaction of aldehyde/acetone with thiols has been developed. In this protocol, β-sulfanyl ketones can be generated without the prior preparation of α, β-unsaturated carbonyl compounds. A variety of thiols reacted with aldehyde/acetone and provided the corresponding thioacetals/thioketals and β-sulfanyl ketones in good to excellent yields, respectively. This protocol is operationally simple, mild, and atom-economical, providing controllable access to thioacetals/thioketals and thia-Michael addition products under mild conditions.
开发了一种由醛/酮与硫醇反应介导的新颖且可控的硫代缩醛/硫代缩酮和β-硫醇基酮的合成方法。在此方案中,无需事先制备α,β-不饱和羰基化合物即可生成β-硫醇基酮。多种硫醇与醛/酮反应,分别以良好至优异的产率提供相应的硫代缩醛/硫代缩酮和β-硫醇基酮。该方案操作简单、温和且原子经济,可在温和条件下可控地获得硫代缩醛/硫代缩酮和硫杂-Michael加成产物。