烯烃
芳基
化学
位阻效应
激进的
组合化学
基质(水族馆)
光化学
立体化学
催化作用
烷基
有机化学
生物
生态学
作者
Anthony R. Allen,Jia‐Fei Poon,Rory C. McAtee,Nicholas B. Watson,Derek A. Pratt,Corey R. J. Stephenson
标识
DOI:10.1021/acscatal.2c02577
摘要
Alkene aminoarylation with arylsulfonylacetamides via a visible-light mediated radical Smiles-Truce rearrangement represents a convenient approach to the privileged arylethylamine pharmacaphore traditionally generated by circuitous, multi-step sequences. Herein, we report detailed synthetic, spectroscopic, kinetic, and computational studies designed to interrogate the proposed mechanism, including the key aryl transfer event. The data are consistent with a rate-limiting 1,4-aryl migration occurring either via a stepwise process involving a radical Meisenheimer-like intermediate or in a concerted fashion dependent on both arene electronics and alkene sterics. Our efforts to probe the mechanism have significantly expanded the substrate scope of the transformation with respect to the migrating aryl group and provide further credence to the synthetic potential of radical aryl migrations.
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