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Consecutive Lossen rearrangement/ transamidation reaction of hydroxamic acids under catalyst- and additive-free conditionst

机译:无催化剂和无添加剂条件下异羟肟酸的连续Lossen重排/氨基转移反应

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摘要

The Lossen rearrangement is a classic process for transforming activated hydroxamic acids into isocyanate under basic or thermal conditions. In the current report we disclosed a consecutive Lossen rearrangement/transamidation reaction in which unactivated hydroxamic acids were converted into N-substituted formamides in a one-pot manner under catalyst- and additive-free conditions. One feature of this novel transformation is that the formamide plays triple roles in the reaction by acting as a readily available solvent, a promoter for additive-free Lossen rearrangement, and a source of the formyl group in the final products. Acyl groups other than formyl could also be introduced into the product when changing the solvent to other low molecular weight aliphatic amide derivatives. The solvent-promoted Lossen rearrangement was better understood by DFT calculations, and the intermediacy of isocyanate and amine was supported well by experiments, in which the desired products were obtained in excellent yields under similar conditions. Not only monosubstituted formamides were synthesized from hydroxamic acids, but also N,N-disubstituted formamides were obtained when secondary amines were used as precursors.
机译:Lossen重排是在碱性或热条件下将活化的异羟肟酸转化为异氰酸酯的经典方法。在本报告中,我们公开了连续的Lossen重排/转酰胺反应,其中未活化的异羟肟酸在无催化剂和无添加剂的条件下以一锅法方式转化为N-取代的甲酰胺。这种新颖转化的一个特征是,甲酰胺通过充当易得的溶剂,无添加剂的洛森重排的促进剂和最终产物中甲酰基的来源,在反应中发挥三重作用。当将溶剂改为其他低分子量脂族酰胺衍生物时,除甲酰基外的其他酰基也可引入产物中。通过DFT计算可以更好地理解溶剂促进的Lossen重排,并且通过实验很好地支持了异氰酸酯和胺的中间体,其中在相似条件下以优异的收率获得了所需的产物。当使用仲胺作为前体时,不仅可以从异羟肟酸合成单取代的甲酰胺,而且还可以得到N,N-二取代的甲酰胺。

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  • 来源
    《Organic & biomolecular chemistry》 |2018年第19期|3615-3624|共10页
  • 作者单位

    College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou 325035, China;

    College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou 325035, China;

    College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou 325035, China;

    College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou 325035, China;

    Hubei Key Laboratory of Processing and Application of Catalytic Materials, Huanggang Normal University, Huanggang 438000, China;

    College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou 325035, China,Hubei Key Laboratory of Processing and Application of Catalytic Materials, Huanggang Normal University, Huanggang 438000, China;

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