Department of Chemistry, Chemistry Research Laboratories, University of Oxford, Mansfield Road, Oxford OX1 3TA, U.K.
UCB Biopharma SPRL, Chemin du Foriest, 1420 Braine-l'Alleud, Belgium.
J Am Chem Soc. 2020 Sep 9;142(36):15445-15453. doi: 10.1021/jacs.0c06986. Epub 2020 Aug 25.
Sulfoximines and sulfonimidamides are promising compounds for medicinal and agrochemistry. As monoaza analogues of sulfones and sulfonamides, respectively, they combine good physicochemical properties, high stability, and the ability to build complexity from a three-dimensional core. However, a lack of quick and efficient methods to prepare these compounds has hindered their uptake in molecule discovery programmes. Herein, we describe a unified, one-pot approach to both sulfoximines and sulfonimidamides, which exploits the high electrophilicity of sulfinyl nitrenes. We generate these rare reactive intermediates from a novel sulfinylhydroxylamine (R-O-N=S=O) reagent through an N-O bond fragmentation process. Combining sulfinyl nitrenes with carbon and nitrogen nucleophiles enables the synthesis of sulfoximines and sulfonimidamides in a reaction time of just 15 min. Alkyl, (hetero)aryl, and alkenyl organometallic reagents can all be used as the first or second component in the reaction, while primary and secondary amines, and anilines, all react with high efficiency as the second nucleophile. The tolerance of the reaction to steric and electronic factors has allowed for the synthesis of the most diverse set of sulfoximines and sulfonimidamides yet described. Experimental and computational investigations support the intermediacy of sulfinyl nitrenes, with nitrene formation proceeding via a transient triplet intermediate before reaching a planar singlet species.
亚磺酰胺和磺酰胺亚胺类化合物是医药和农用化学品领域极具前景的化合物。它们分别作为砜类和磺胺类的单氮类似物,兼具良好的物理化学性质、高稳定性,以及从三维核心构建复杂性的能力。然而,缺乏快速有效的方法来制备这些化合物,限制了它们在分子发现计划中的应用。在此,我们描述了一种统一的、一锅法制备亚磺酰胺和磺酰胺亚胺的方法,该方法利用了亚磺酰基氮烯的高亲电性。我们通过 N-O 键断裂过程,从一种新型亚磺酰基羟胺(R-O-N=S=O)试剂中生成这些罕见的活性中间体。亚磺酰基氮烯与碳和氮亲核试剂结合,可以在 15 分钟的反应时间内合成亚磺酰胺和磺酰胺亚胺。烷基、(杂)芳基和烯基有机金属试剂都可以作为反应的第一或第二组分,而伯胺和仲胺以及苯胺都作为第二亲核试剂高效反应。该反应对空间位阻和电子因素的容忍性允许合成出迄今为止最多样化的亚磺酰胺和磺酰胺亚胺类化合物。实验和计算研究支持亚磺酰基氮烯的中间体性,氮烯的形成通过瞬态三重态中间体进行,然后到达平面单重态物种。