Department of Chemistry, McGill University, 801 Sherbrooke Street West, Montreal, QC, H3A 0B8 (Canada).
Angew Chem Int Ed Engl. 2014 Jun 2;53(23):5877-81. doi: 10.1002/anie.201311103. Epub 2014 Apr 17.
The importance of aromatic C-O, C-N, and C-S bonds necessitates increasingly efficient strategies for their formation. Herein, we report a biomimetic approach that converts phenolic C-H bonds into C-O, C-N, and C-S bonds at the sole expense of reducing dioxygen (O2) to water (H2O). Our method hinges on a regio- and chemoselective copper-catalyzed aerobic oxygenation to provide ortho-quinones. ortho-Quinones are versatile intermediates, whose direct catalytic aerobic synthesis from phenols enables a mild and efficient means of synthesizing polyfunctional aromatic rings.
芳香族 C-O、C-N 和 C-S 键的重要性使得人们需要越来越有效的方法来构建这些键。在此,我们报告了一种仿生方法,该方法仅以消耗氧气(O2)转化为水(H2O)为代价,将酚类化合物中的 C-H 键转化为 C-O、C-N 和 C-S 键。我们的方法依赖于区域和化学选择性的铜催化有氧氧化来提供邻醌。邻醌是一种多功能的中间体,其可直接从酚类化合物经催化有氧合成得到,为多官能芳环的合成提供了一种温和、高效的方法。