Estado Sólido y Catálisis Ambiental (ESCA), Departamento de Química, Facultad de Ciencias, Universidad Nacional de Colombia, Carrera 30 No. 45-03, Bogotá 111321, Colombia.
INQA, Química Farmacéutica, Facultad de Ciencias, Universidad El Bosque, Bogotá 11001, Colombia.
Molecules. 2023 Apr 26;28(9):3743. doi: 10.3390/molecules28093743.
In recent years, -heterocyclic carbenes (NHC) have gained recognition as versatile molecules capable of acting as organocatalysts in various reactions, particularly through the activation of aldehydes via Breslow-type adducts. This organocatalytic activation has enabled the production of numerous 3,4-dihydropyran-2-ones and related derivatives. In this review, we provide an overview of the production of 3,4-dihydropyran-2-ones and derivatives via organocatalytic processes involving NHCs over the past eight years. These processes involve the use of a diverse range of substrates, catalysts, and reaction conditions, which can be classified into [4+2]-and [3+3]-type cycloadditions, primarily aimed at synthesizing this skeleton due to its biological activity and multiple stereocenters. These processes are scaled up to the gram scale, and the resulting products are often directed towards epimerization and functionalization to produce more complex molecules with potential applications in the biological field. Finally, we provide a perspective and the future directions of this topic in organic synthesis.
近年来,-杂环卡宾(NHC)作为多功能分子得到了认可,能够通过 Breslow 型加合物激活醛,在各种反应中充当有机催化剂,特别是在醛的激活方面。这种有机催化活化使得能够生产大量的 3,4-二氢吡喃-2-酮和相关衍生物。在这篇综述中,我们概述了过去八年中通过涉及 NHC 的有机催化过程生产 3,4-二氢吡喃-2-酮和衍生物的情况。这些过程涉及使用各种底物、催化剂和反应条件,可以分为 [4+2]-和 [3+3]-型环加成,主要旨在合成这个骨架,因为它具有生物活性和多个立体中心。这些过程可以扩大到克级规模,得到的产物通常会进行差向异构化和官能化,以产生具有潜在生物学应用的更复杂的分子。最后,我们提供了对这个有机合成主题的展望和未来方向。