Department of Applied Chemistry, Faculty of Engineering, Osaka University, Suita, Osaka 565-0871, Japan.
Chem Commun (Camb). 2012 Nov 11;48(87):10704-14. doi: 10.1039/c2cc34659a.
Some new types of copper-mediated intermolecular oxidative direct C-C (hetero)aromatic cross-couplings are described. A combination of the simple CuCl(2) salt and molecular oxygen allows 1,3-azoles to couple with terminal alkynes directly to form the corresponding heteroarylacetylenes. This direct version of Sonogashira-type coupling can be applied to the reaction with polyfluoroarenes. A copper acetate complex enables direct biaryl coupling between 2-arylazines and 1,3-azoles even in the absence of any palladium catalysts. Moreover, the Cu-based protocol can be extended to the coupling with indoles and pyrroles, in which a catalytic variant is also possible by using an ideal co-oxidant, atmospheric oxygen. On the other hand, a copper-promoted annulative direct coupling of o-alkynylphenols and -anilines with 1,3-azoles can provide a unique dehydrogenative approach to C3-azolylbenzoheteroles from nonhalogenated and nonmetalated starting materials. In addition, a related N-azolylindole synthesis from similar substrates is also disclosed.
描述了一些新型的铜介导的分子间氧化直接 C-C(杂)芳基交叉偶联反应。简单的 CuCl(2)盐和分子氧的组合可以使 1,3-唑与末端炔烃直接偶联,形成相应的杂芳基乙炔。这种直接的 Sonogashira 型偶联反应可以应用于与多氟芳烃的反应。醋酸铜络合物可以使 2-芳基嗪和 1,3-唑之间进行直接联芳基偶联,即使没有任何钯催化剂也是如此。此外,基于 Cu 的方案可以扩展到与吲哚和吡咯的偶联,其中通过使用理想的共氧化剂,大气氧,也可以实现催化变体。另一方面,铜促进的邻炔基苯酚和 -苯胺与 1,3-唑的环化直接偶联可以为非卤代和非金属化起始原料的 C3-唑基苯并杂环提供独特的脱氢方法。此外,还披露了类似底物的相关 N-唑基吲哚合成。