胺化
化学
亲核细胞
电泳剂
烯丙基重排
亲电胺化
组合化学
对映选择合成
催化作用
异构化
胺气处理
钯
有机化学
药物化学
作者
Siraj Z. Ali,Brenna G. Budaitis,Devon F.A. Fontaine,Andria L. Pace,Jacob A. Garwin,M. Christina White
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2022-04-14
卷期号:376 (6590): 276-283
被引量:59
标识
DOI:10.1126/science.abn8382
摘要
Intermolecular cross-coupling of terminal olefins with secondary amines to form complex tertiary amines-a common motif in pharmaceuticals-remains a major challenge in chemical synthesis. Basic amine nucleophiles in nondirected, electrophilic metal-catalyzed aminations tend to bind to and thereby inhibit metal catalysts. We reasoned that an autoregulatory mechanism coupling the release of amine nucleophiles with catalyst turnover could enable functionalization without inhibiting metal-mediated heterolytic carbon-hydrogen cleavage. Here, we report a palladium(II)-catalyzed allylic carbon-hydrogen amination cross-coupling using this strategy, featuring 48 cyclic and acyclic secondary amines (10 pharmaceutically relevant cores) and 34 terminal olefins (bearing electrophilic functionality) to furnish 81 tertiary allylic amines, including 12 drug compounds and 10 complex drug derivatives, with excellent regio- and stereoselectivity (>20:1 linear:branched, >20:1 E:Z).
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