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贝利斯-希尔曼反应中的丙烯酰胺:反应范围的拓展以及1,4-二氮杂双环[2.2.2]辛烷相较于碱性更强的叔胺催化剂的意外优势。

Acrylamide in the Baylis-Hillman reaction: expanded reaction scope and the unexpected superiority of DABCO over more basic tertiary amine catalysts.

作者信息

Faltin Cornelia, Fleming Eimear M, Connon Stephen J

机构信息

Department of Chemistry, Trinity College Dublin, Dublin 2, Ireland.

出版信息

J Org Chem. 2004 Sep 17;69(19):6496-9. doi: 10.1021/jo0490907.

Abstract

DMAP, DBU, and quinuclidine efficiently promote novel hydroalkoxylation reactions of acrylamide in primary alcohol solvents. DABCO is a comparatively poor hydroalkoxylation promoter and can effect clean, selective Baylis-Hillman reactions between acrylamide and aldehydes in alcoholic/aqueous media in which more basic nucleophilic catalysts promote hydroalkoxylation preferentially. Optimization of the reaction conditions has allowed acrylamide to be reacted with a range of aromatic aldehydes in moderate to excellent yields, including the first examples involving deactivated, electron-rich substrates such as p-tolualdehyde and o-anisaldehyde.

摘要

DMAP、DBU和奎宁环能有效地促进丙烯酰胺在伯醇溶剂中的新型氢烷氧基化反应。三乙烯二胺是一种相对较差的氢烷氧基化促进剂,在醇/水介质中,它能使丙烯酰胺与醛发生干净、选择性的贝利斯-希尔曼反应,而在这种介质中,碱性更强的亲核催化剂会优先促进氢烷氧基化反应。反应条件的优化使得丙烯酰胺能与一系列芳香醛以中等至优异的产率反应,包括涉及对甲苯醛和邻茴香醛等钝化富电子底物的首例反应。

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