化学
烯酮
吡啶
三氟甲磺酸
三氟甲磺酸
亲核细胞
试剂
苯胺
吡啶
路易斯酸
电泳剂
有机合成
有机化学
组合化学
药物化学
催化作用
作者
Danielle L. McConnell,Alisha M. Blades,Danielle Gomes Rodrigues,Phoebe V. Keyes,Justin C. Sonberg,Caitlin E. Anthony,Sofia Rachad,Olivia M. Simone,Caroline F. Sullivan,Jonathan D. Shapiro,Christopher C. Williams,Benjamin C. Schafer,Amy Glanzer,Holly Hutchinson,Ashley Thayaparan,Zoe A. Krevlin,Isabella Bote,Yasin Haffary,Sambat Bhandari,Jack A. Goodman,Max M. Majireck
标识
DOI:10.1021/acs.joc.1c01764
摘要
N-Quaternized ketene N,O-acetals are typically an unstable, transient class of compounds most commonly observed as reactive intermediates. In this report, we describe a general synthetic approach to a variety of bench-stable N-quaternized ketene N,O-acetals via treatment of pyridine or aniline bases with acetylenic ethers and an appropriate Brønsted or Lewis acid (triflic acid, triflimide, or scandium(III) triflate). The resulting pyridinium and anilinium salts can be used as reagents or synthetic intermediates in multiple reaction types. For example, N-(1-ethoxyvinyl)pyridinium or anilinium salts can thermally release highly reactive O-ethyl ketenium ions for use in acid catalyst-free electrophilic aromatic substitutions. N-(1-Ethoxyvinyl)-2-halopyridinium salts can be employed in peptide couplings as a derivative of Mukaiyama reagents or react with amines in nucleophilic aromatic substitutions under mild conditions. These preliminary reactions illustrate the broad potential of these currently understudied compounds in organic synthesis.
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