硝基苯
化学
芳基
吡啶
组合化学
氮气
光化学
有机化学
烷基
催化作用
作者
T. Pearson,Ryoma Shimazumi,Julia L. Driscoll,Balu D. Dherange,Dong Il Park,Mark D. Levin
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2023-09-29
卷期号:381 (6665): 1474-1479
被引量:46
标识
DOI:10.1126/science.adj5331
摘要
Nitrogen scanning in aryl fragments is a valuable aspect of the drug discovery process, but current strategies require time-intensive, parallel, bottom-up synthesis of each pyridyl isomer because of a lack of direct carbon-to-nitrogen (C-to-N) replacement reactions. We report a site-directable aryl C-to-N replacement reaction allowing unified access to various pyridine isomers through a nitrene-internalization process. In a two-step, one-pot procedure, aryl azides are first photochemically converted to 3 H -azepines, which then undergo an oxidatively triggered C2-selective cheletropic carbon extrusion through a spirocyclic azanorcaradiene intermediate to afford the pyridine products. Because the ipso carbon of the aryl nitrene is excised from the molecule, the reaction proceeds regioselectively without perturbation of the remainder of the substrate. Applications are demonstrated in the abbreviated synthesis of a pyridyl derivative of estrone, as well as in a prototypical nitrogen scan.
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