Faculty of Chemical Engineering, Ho Chi Minh City University of Technology (HCMUT), 268 Ly Thuong Kiet, District 10, Ho Chi Minh City, Vietnam.
Org Biomol Chem. 2021 Jun 2;19(21):4726-4732. doi: 10.1039/d1ob00229e.
Pyrido-fused quinazolinones were synthesized via copper-catalyzed cascade C(sp2)-H amination and annulation of 2-aminoarylmethanols with isoquinolines or pyridines. The transformation proceeded readily in the presence of a commercially available CuCl2 catalyst with molecular oxygen as a green oxidant. Moreover, the dehydrogenative cross-coupling of 2-aminoarylmethanols with tetrahydroisoquinolines was explored, in which CuBr exhibited higher catalytic activity than CuCl2. Broad substrate scope with good tolerance of functionalities was observed under the optimized reaction conditions. The bioactive naturally occurring alkaloid rutaecarpine could be obtained by this strategy. The remarkable feature of this protocol is that complicated heterocyclic structures are readily achieved in a single synthetic step from easily accessible reactants and catalysts. This pathway to pyrido-fused quinazolinones would be complementary to existing protocols.
通过铜催化的 2-氨基芳基甲醇与异喹啉或吡啶的级联 C(sp2)-H 氨化和环化反应,合成了吡啶并稠合的喹唑啉酮。在商业上可获得的 CuCl2 催化剂和分子氧作为绿色氧化剂的存在下,该转化很容易进行。此外,还探索了 2-氨基芳基甲醇与四氢异喹啉的脱氢交叉偶联反应,其中 CuBr 表现出比 CuCl2 更高的催化活性。在优化的反应条件下,观察到具有广泛官能团耐受性的宽底物范围。通过这种策略可以获得生物活性天然存在的生物碱蝙蝠葛堿。该方案的显著特点是,通过从易得的反应物和催化剂一步合成,很容易获得复杂的杂环结构。这种合成吡啶并稠合喹唑啉酮的方法可以与现有的方法互补。