Zhu Joshua L, Laws Stephen W, Rourke Michael J, Scheidt Karl A
Department of Chemistry, Center for Molecular Innovation and Drug Discovery, Northwestern University, Evanston, IL 60208, United States.
Green Synth Catal. 2020 Jun;1(1):70-74. doi: 10.1016/j.gresc.2020.06.003. Epub 2020 Jul 27.
Recent advances in photocatalysis have enabled radical methods with complementary chemoselectivity to established two electron bond forming approaches. While this radical strategy has previously been limited to substrates with favorable redox potentials, Brønsted/Lewis acid activation has emerged as a means of facilitating otherwise difficult reductions. We report herein our investigations into the Lewis acid-promoted redox activation of -ketocarbonyls in a model photocatalytic radical alkylation reaction. Rapid evaluation of substrates and reactions conditions was achieved by high throughput experimentation using 96-well plate photoreactors.
光催化领域的最新进展使得具有互补化学选择性的自由基方法能够应用于已有的双电子键形成方法。虽然这种自由基策略以前仅限于具有有利氧化还原电位的底物,但布朗斯特/路易斯酸活化已成为促进原本困难的还原反应的一种手段。我们在此报告了我们在模型光催化自由基烷基化反应中对路易斯酸促进的α-羰基化合物氧化还原活化的研究。通过使用96孔板光反应器的高通量实验实现了对底物和反应条件的快速评估。