Häring Marleen, Abramov Alex, Okumura Keisuke, Ghosh Indrajit, König Burkhard, Yanai Nobuhiro, Kimizuka Nobuo, Díaz Díaz David
Institut für Organische Chemie , Universität Regensburg , Universitätsstraße 31 , 93053 Regensburg , Germany.
Kyushu University , Department of Chemistry and Biochemistry, Graduate School of Engineering, Center for Molecular Systems (CMS) , 744 Motooka, Nishi-Ku , 810-0395 Fukuoka , Japan.
J Org Chem. 2018 Aug 3;83(15):7928-7938. doi: 10.1021/acs.joc.8b00797. Epub 2018 Jun 7.
In this work, we demonstrate that useful C-C bond-forming photoredox catalysis can be performed in air using easily prepared gel networks as reaction media to give similar results as are obtained under inert atmosphere conditions. These reactions are completely inhibited in homogeneous solution in air. However, the supramolecular fibrillar gel networks confine the reactants and block oxygen diffusion, allowing air-sensitive catalytic activity under ambient conditions. We investigate the mechanism of this remarkable protection, focusing on the boundary effect in the self-assembled supramolecular gels that enhances the rates of productive reactions over diffusion-controlled quenching of excited states. Our observations suggest the occurrence of triplet-sensitized chemical reactions in the gel networks within the compartmentalized solvent pools held between the nanofibers. The combination of enhanced viscosity and added interfaces in supramolecular gel media seems to be a key factor in facilitating the reactions under aerobic conditions.
在这项工作中,我们证明了利用易于制备的凝胶网络作为反应介质,可在空气中进行有用的碳-碳键形成光氧化还原催化反应,其结果与在惰性气氛条件下所获得的结果相似。这些反应在空气中的均相溶液中会完全被抑制。然而,超分子纤维状凝胶网络限制了反应物并阻止了氧气扩散,从而在环境条件下实现了对空气敏感的催化活性。我们研究了这种显著保护作用的机制,重点关注自组装超分子凝胶中的边界效应,该效应提高了生产性反应的速率,超过了激发态的扩散控制猝灭速率。我们的观察结果表明,在纳米纤维之间的分隔溶剂池中,凝胶网络内发生了三重态敏化化学反应。超分子凝胶介质中增强的粘度和增加的界面的结合似乎是促进有氧条件下反应的关键因素。