Reichle Alexander, Koch Magdalena, Sterzel Hannes, Großkopf Lea-Joy, Floss Johannes, Rehbein Julia, Reiser Oliver
Fakultät Chemie & Pharmazie, Universität Regensburg, Universitätsstr. 31, 93053, Regensburg, Germany.
Angew Chem Int Ed Engl. 2023 Apr 11;62(16):e202219086. doi: 10.1002/anie.202219086. Epub 2023 Mar 8.
We report the visible light-mediated copper-catalyzed vicinal difunctionalization of olefins utilizing bromonitroalkanes as ATRA reagents. This protocol is characterized by high yields and fast reaction times under environmentally benign reaction conditions with exceptional scope, allowing the rapid functionalization of both activated and unactivated olefins. Moreover, late-stage functionnalization of biologically active molecules and upscaling to gram quantities is demonstrated, which offers manifold possibilities for further transformations, e.g. access to nitro- and aminocyclopropanes. Besides the synthetic utility of the title transformation, this study undergirds the exclusive role of copper in photoredox catalysis showing its ability to stabilize and interact with radical intermediates in its coordination sphere. EPR studies suggest that such interactions can even outperform a highly favorable cyclization of transient to persistent radicals contrasting iridium-based photocatalysts.
我们报道了利用溴代硝基烷烃作为原子转移自由基加成(ATRA)试剂,可见光介导的铜催化烯烃的邻位双官能化反应。该方法的特点是在环境友好的反应条件下,产率高、反应时间短,适用范围广,能够使活化和未活化的烯烃快速官能化。此外,还展示了生物活性分子的后期官能化以及放大至克级规模,这为进一步转化提供了多种可能性,例如合成硝基环丙烷和氨基环丙烷。除了该反应的合成实用性外,本研究还强调了铜在光氧化还原催化中的独特作用,表明其能够在配位球中稳定自由基中间体并与之相互作用。电子顺磁共振(EPR)研究表明,与基于铱的光催化剂相比,这种相互作用甚至可以超越瞬态自由基到持久自由基的高度有利的环化反应。