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Naphthalenes and Quinolines by Domino Reactions of Morita–Baylis–Hillman Acetates

机译:Morita-Baylis-Hillman醋酸盐的Domino反应萘和喹啉

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摘要

An efficient synthetic route to highly functionalized naphthalenes and quinolines has been developed using domino reactions between Morita–Baylis–Hillman (MBH) acetates and active methylene compounds (AMCs) promoted by anhydrous K2CO3 in dry N,N-dimethylformamide (DMF) at 23 °C. The substrates incorporate allylic acetates positioned adjacent to a Michael acceptor as well as an aromatic ring activated toward a SNAr ring closure. A control experiment indicated that the initial reaction was an SN2’-type displacement of a side chain acetoxy by the AMC anion to afford the alkene product bearing the added nucleophile trans to the SNAr aromatic ring acceptor. Thus, equilibration of the alkene geometry of the initial product was required prior to cyclization. Products were isolated in good to excellent yields. Numerous cases (24) are reported, and several mechanistic possibilities are discussed.
机译:在23°在23°在23°在干燥N,N-二甲基甲酰胺(DMF)中促进的莫蒂塔-Baylis-Hillman(MBH)乙酸盐(MBH)乙酸盐(MBH)乙酸盐(MBH)乙酸盐和活性亚甲基化合物(AMC)之间的Domino反应,在23°在干燥N C。底物包含邻近迈克尔受体的烯丙基乙酸盐以及朝向小组环封闭的芳环。一种对照实验表明,初始反应是通过AMC阴离子的侧链乙酰乙酰乙酰乙酰型的Sn2'型位移,得到含有添加的亲核官能的烯烃产物到SNAR芳环受体。因此,在环化之前需要初始产物的烯烃几何形状的平衡。产品良好地分离出优异的产量。报告了许多案例(24),并讨论了几种机制可能性。

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