Chai Xiangpei, Hu Xinheng, Zhao Xiaowei, Yin Yanli, Cao Shanshan, Jiang Zhiyong
School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan, 453007, P. R. China.
International S&T Cooperation Base of Chiral Chemistry, Henan University, Kaifeng, Henan, 475004, P. R. China.
Angew Chem Int Ed Engl. 2022 Mar 1;61(10):e202115110. doi: 10.1002/anie.202115110. Epub 2022 Jan 20.
Chiral hydrogen-bonding (H-bonding) catalytic asymmetric conjugate addition to activated olefins has been widely used to access enantioenriched molecules containing stereocenters at the β-position of the olefin activating groups. Herein, we report the first highly enantioselective radical-based manifold. Under a dual organocatalyst system involving a chiral phosphoric acid and DPZ as the photoredox sensitizer, transformations of N-arylglycines, in which aryls with CF substituents are introduced, with alkenyl azaarenes afforded valuable hydroaminoalkylation adducts with satisfactory results. In addition to the diversity of azaarenes, the method can be used to construct aryl-, alkyl- and silyl-substituted stereocenter. Control experiments and density functional theory calculations were performed to elucidate a plausible reaction mechanism and the origin of stereoselectivity, wherein nonclassical H-bonding interactions were found to assist chiral catalysts in offering sufficient enantiocontrol.
手性氢键催化不对称共轭加成到活化烯烃已被广泛用于获得在烯烃活化基团的β位含有立体中心的对映体富集分子。在此,我们报道了首个基于自由基的高对映选择性反应体系。在涉及手性磷酸和DPZ作为光氧化还原敏化剂的双有机催化剂体系下,引入具有CF取代基的芳基的N-芳基甘氨酸与烯基氮杂芳烃发生转化,得到了具有良好结果的有价值的氢氨烷基化加合物。除了氮杂芳烃的多样性外,该方法还可用于构建芳基、烷基和硅基取代的立体中心。进行了对照实验和密度泛函理论计算,以阐明合理的反应机理和立体选择性的来源,其中发现非经典氢键相互作用有助于手性催化剂提供足够的对映体控制。