Cavaca Lídia A S, Santos Tiago M P, Ravasco Joao M J M, Gomes Rafael F A, Afonso Carlos A M
Research Institute for Medicines (iMed.ULisboa), Faculty of Farmacy, Universidade de Lisboa, Avenida Professor Gama Pinto, 1649-003 Lisbon, Portugal.
J Org Chem. 2024 May 17;89(10):6677-6683. doi: 10.1021/acs.joc.3c01040. Epub 2024 May 1.
Unlike secondary alkyl amines and electron-rich anilines, secondary electron-poor anilines are challenging amine sources to explore the chemical space of Lewis acid-catalyzed condensation-based transformations with furfural. In this work, we report the efficient synthesis of -4,5-diamino cyclopentenones (DCP) using a high-pressure promoted Nazarov-like electrocyclization of Stenhouse salts arising from the Sc(III)-catalyzed condensation of furfural with secondary electron-poor anilines. The reaction enables access to otherwise difficult-to-access DCP and compatibility with a large scope of alkyl and aryl secondary amines. A 2- to 18-fold increase in yields for electron-poor anilines was highlighted using this approach in the synthesis of a pharmacologically active compound.
与仲烷基胺和富电子苯胺不同,缺电子仲苯胺是具有挑战性的胺源,用于探索与糠醛进行路易斯酸催化的基于缩合反应的化学空间。在这项工作中,我们报道了通过高压促进的类似纳扎罗夫电环化反应高效合成-4,5-二氨基环戊烯酮(DCP),该反应由Sc(III)催化糠醛与缺电子仲苯胺缩合生成的施滕豪斯盐引发。该反应能够得到难以获得的DCP,并与多种烷基和芳基仲胺兼容。在合成一种药理活性化合物时,使用这种方法突出显示缺电子苯胺的产率提高了2至18倍。