Nicastri Kate A, Zappia Soren, Pratt Jared C, Duncan Julia M, Guzei Ilia A, Fernández Israel, Schomaker Jennifer M
Department of Chemistry, University of Wisconsin, 1101 University Avenue, Madison, WI 53706.
Departamento de Química Orgánica I and Centro de Innovación en Química Avanzada (ORFEO-CINQA), Facultad de Ciencias Químicas, Universidad Complutense de Madrid, 28040-Madrid, Spain.
ACS Catal. 2022 Jan 21;12(2):1572-1580. doi: 10.1021/acscatal.1c05413. Epub 2022 Jan 11.
Methods for rapid preparation of densely functionalized and stereochemically complex -heterocyclic scaffolds are in demand for exploring potential bioactive chemical space. This work describes experimental and computational studies to better understand the features of aziridinium ylides as intermediates for the synthesis of highly substituted dehydromorpholines. The development of this chemistry has enabled the extension of aziridinium ylide chemistry to the concomitant formation of both a C-N and a C-O bond in a manner that preserves the stereochemical information embedded in the substrate. Additionally, we have uncovered several key insights that describe the importance of steric effects, rotational barriers around the C-N bond of the aziridinium ylide, and non-covalent interactions (NCIs) on the ultimate reaction outcome. These critical insights will assist in the further development of this chemistry to generate -heterocycles that will further expand complex amine chemical space.
为了探索潜在的生物活性化学空间,需要快速制备高密度官能化和立体化学复杂的杂环支架的方法。这项工作描述了实验和计算研究,以更好地理解氮杂环丙烷叶立德作为合成高度取代的脱氢吗啉中间体的特征。这种化学方法的发展使得氮杂环丙烷叶立德化学能够扩展到以保留底物中嵌入的立体化学信息的方式同时形成C-N键和C-O键。此外,我们还发现了几个关键的见解,这些见解描述了空间效应、氮杂环丙烷叶立德C-N键周围的旋转势垒以及非共价相互作用(NCI)对最终反应结果的重要性。这些关键见解将有助于进一步发展这种化学方法,以生成能够进一步扩展复杂胺化学空间的杂环。