Hu Huayou, Chen Si-Jie, Mandal Mukunda, Pratik Saied Md, Buss Joshua A, Krska Shane W, Cramer Christopher J, Stahl Shannon S
Department of Chemistry, University of Wisconsin-Madison, 1101 University Avenue, Madison, WI, USA.
These authors contribute equally: Si-Jie Chen and Huayou Hu.
Nat Catal. 2020 Apr;3(4):358-367. doi: 10.1038/s41929-020-0425-1. Epub 2020 Feb 24.
Cross-coupling reactions enable rapid, convergent synthesis of diverse molecules and provide the foundation for modern chemical synthesis. The most widely used methods employ sp-hybridized coupling partners, such as aryl halides or related pre-functionalized substrates. Here, we demonstrate copper-catalysed oxidative cross coupling of benzylic C-H bonds with alcohols to afford benzyl ethers, enabled by a redox-buffering strategy that maintains the activity of the copper catalyst throughout the reaction. The reactions employ the C-H substrate as the limiting reagent and exhibit broad scope with respect to both coupling partners. This approach to direct site-selective functionalization of C(sp)-H bonds provides the basis for efficient three-dimensional diversification of organic molecules and should find widespread utility in organic synthesis, particularly for medicinal chemistry applications.
交叉偶联反应能够快速、汇聚式地合成各种分子,并为现代化学合成奠定了基础。最广泛使用的方法采用sp杂化的偶联伙伴,如芳基卤化物或相关的预官能化底物。在此,我们展示了铜催化的苄基C-H键与醇的氧化交叉偶联反应,以生成苄基醚,这是通过一种氧化还原缓冲策略实现的,该策略在整个反应过程中保持铜催化剂的活性。这些反应使用C-H底物作为限量试剂,并且对两种偶联伙伴都具有广泛的适用范围。这种对C(sp)-H键进行直接位点选择性官能化的方法为有机分子的高效三维多样化提供了基础,并且应该在有机合成中,特别是在药物化学应用中找到广泛的用途。