Guo Jia-Dong, Korsaye Feven-Alemu, Schutz Dorian, Ciofini Ilaria, Miesch Laurence
Equipe Synthèse Organique et Phytochimie, Institut de Chimie, CNRS-UdS UMR 7177, 4 rue Blaise Pascal, CS 90032 67081 Strasbourg France
Chemical Theory and Modelling Group, Chimie ParisTech, PSL University, CNRS, Institute of Chemistry for Life and Health Sciences F-75005 Paris France
Chem Sci. 2024 Oct 3;15(43):17962-70. doi: 10.1039/d4sc05190d.
Herein, we report the first visible-light-induced strategy for the rapid synthesis of densely functionalized α- and γ-phosphorylated β-sulfonyl enamines in a regio- and stereoselective manner from -sulfonyl allenamides and H-phosphine oxides. The transformation displays a broad substrate scope, while operating at room temperature under photocatalyst- and additive-free conditions. In this atom-economical process, either terminal or substituted -sulfonyl allenamides trigger an unprecedented -to- [1,3]-sulfonyl shift, relying on a dual radical allyl resonance and α-heteroatom effect in its triplet excited state. A plausible reaction mechanism is proposed which was supported by the outcomes of theoretical approaches based on Density Functional Theory (DFT) calculations.
在此,我们报道了首个可见光诱导的策略,可从β-磺酰基丙二烯酰胺和H-膦氧化物以区域和立体选择性的方式快速合成密集官能化的α-和γ-磷酸化β-磺酰基烯胺。该转化反应具有广泛的底物范围,且在无光催化剂和添加剂的条件下于室温下进行。在这个原子经济的过程中,无论是末端还是取代的β-磺酰基丙二烯酰胺都会引发前所未有的β到[1,3] -磺酰基迁移,这依赖于其三重激发态中的双自由基烯丙基共振和α-杂原子效应。我们提出了一个合理的反应机理,该机理得到了基于密度泛函理论(DFT)计算的理论方法结果的支持。