Li Yuqi, Peng Rongbin, Ma Zhaolong, Wang Zhihui, Zhu Chuanle
National & Local Joint Engineering Research Center for Deep Utilization Technology of Rock-salt Resource, College of Chemical Engineering, Huaiyin Institute of Technology, Huaian, 223003, P. R. China.
School of Chemistry and Chemical Engineering, Key Laboratory of Functional Molecular Engineering of Guangdong Province, South China University of Technology, Guangzhou 510640, P. R. China.
Org Biomol Chem. 2025 Jan 15;23(3):679-687. doi: 10.1039/d4ob01554a.
A practical and efficient method for the -acrylation of amines with (trifluoromethyl)alkenes is achieved the cleavage of three C(sp)-F bonds, affording a diverse range of useful tertiary and secondary α-arylacrylamides in high yields. This protocol features mild conditions, is transition-metal free, operationally simple, gram-scalable, and compatible with valuable functional groups, and has a broad substrate scope. Mechanistic studies indicate that exchange of an oxygen atom happens between HO and NaOH, and that the oxygen atom is incorporated into the α-arylacrylamides the -defluorooxylation of the (trifluoromethyl)alkene. This method is also applied in the late-stage -acrylation of pharmaceuticals.
实现了一种实用且高效的用(三氟甲基)烯烃对胺进行α-丙烯酰化的方法,该方法通过断裂三个C(sp)-F键,以高收率得到了多种有用的叔和仲α-芳基丙烯酰胺。该方案具有温和的条件、无过渡金属、操作简单、克级规模可扩大且与有价值的官能团兼容的特点,并且底物范围广泛。机理研究表明,氧原子在HO和NaOH之间发生交换,并且该氧原子通过(三氟甲基)烯烃的脱氟氧合作用并入α-芳基丙烯酰胺中。该方法还应用于药物的后期α-丙烯酰化。