化学
区域选择性
立体选择性
对映选择合成
有机合成
转移加氢
有机化学
组合化学
立体化学
催化作用
钌
作者
Wenjun Liu,Caiyi Ren,Liyuan Zhou,Haotian Luo,Xiangjian Meng,Peng Luo,Yingkun Luo,Wennan Dong,Shouang Lan,Jinggong Liu,Shuang Yang,Qi Zhang,Xinqiang Fang
摘要
Developing a general method that leads to the formation of different classes of chiral bioactive compounds and their stereoisomers is an attractive but challenging research topic in organic synthesis. Furthermore, despite the great value of asymmetric transfer hydrogenation (ATH) in both organic synthesis and the pharmaceutical industry, the monohydrogenation of unsymmetrical 1,2-diketones remains underdeveloped. Here, we report the aryloxy group-assisted highly regio-, diastereo-, and enantioselective ATH of racemic 1,2-diketones. The work produces a myriad of enantioenriched dihydroxy ketones, and further transformations furnish all eight stereoisomers of diaryl triols, polyphenol, emblirol, and glycerol-type natural products. Mechanistic studies and calculations reveal two working modes of the aryloxy group in switching the regioselectivity from a more reactive carbonyl to a less reactive one, and the potential of ATH on 1,2-diketones in solving challenging synthetic issues has been clearly demonstrated.
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