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A Novel Synthesis of Highly Functionalized Pyridines by a One-Pot Three-Component Tandem Reaction of Aldehydes Malononitrile and N-Alkyl-2-cyanoacetamides under Microwave Irradiation

机译:微波辐射下醛丙二腈和N-烷基-2-氰基乙酰胺的一锅三组分串联反应新型合成高官能度吡啶

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摘要

A convenient, fast and environmentally benign procedure for the synthesis of a new series of highly functionalized N-alkylated pyridines as privileged medicinal scaffolds was developed via a unique three-component reaction of easily available aromatic as well as heteroaromatic aldehydes, N-alkyl-2-cyanoacetamides and malononitrile in EtOH in the presence of K2CO3 as a base promoter under microwave irradiation. The presented tandem process is presumed to proceed via Knoevenagel condensation, Michael addition, intramolecular cyclization, autoxidation and subsequent aromatization. Particularly valuable features of this protocol, including high product yields, mild conditions, atom-efficiency, simple execution, short reaction times and easy purification make it a highly efficient and promising synthetic strategy to prepare substituted pyridine nuclei. The proposed mechanism of this novel one-pot reaction and structure elucidation of the products are discussed.
机译:通过易得的芳族和杂芳族醛N-烷基-2的独特三组分反应,开发了一种方便,快速且对环境有益的方法,用于合成一系列新的高度官能化的N-烷基化吡啶作为特有的医用支架。 -氰基乙酰胺和丙二腈在乙醇中存在的K2CO3作为碱促进剂,在微波辐射下。推测所提出的串联过程是通过Knoevenagel缩合,Michael加成,分子内环化,自氧化和随后的芳构化进行的。该方案特别有价值的功能,包括高产品收率,温和的条件,原子效率,简单的执行,较短的反应时间和易于纯化,使其成为制备取代吡啶核的高效且有希望的合成策略。讨论了该新颖的一锅反应的拟议机理和产物的结构阐明。

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