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亚磺酸盐阴离子催化的非对映选择性氮丙啶合成。

Sulfenate Anion Catalyzed Diastereoselective Synthesis of Aziridines.

机构信息

Roy and Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, 231 South 34th Street, Philadelphia, PA, USA.

Department of Organic Chemistry, Institute for Advance Research in Chemical Sciences (IAdChem), Universidad Autónoma de Madrid Cantoblanco, 28049, Madrid, Spain.

出版信息

Angew Chem Int Ed Engl. 2023 Jun 19;62(25):e202303069. doi: 10.1002/anie.202303069. Epub 2023 May 9.

Abstract

Aziridines are highly valued synthetic targets in organic and medicinal chemistry. The organocatalytic synthesis of such structures with broad substrate scope and good diastereoselectivity, however, is rare. Herein, we report a broadly applicable and diastereoselective synthetic method for the synthesis of trans-aziridines from imines and benzylic or alkyl halides utilizing sulfenate anions (PhSO ) as the catalyst. Substrates bearing heterocyclic aromatic groups, alkyl, and electron-rich and electron-poor aryl groups were shown to be compatible with this method (33 examples), giving good yields and high diastereoselectivities (trans : cis >20 : 1). Further functionalization of aziridines containing cyclopropyl or cyclobutyl groups was achieved through ring-opening reactions, with a cyclobutyl-substituted norephedrine derivative obtained through a four-step synthesis. We offer a mechanistic proposal involving reversible addition of the deprotonated benzyl sulfoxide to the imine to explain the high trans-diastereoselectivity.

摘要

氮丙啶是有机和药物化学中非常有价值的合成目标。然而,具有广泛底物范围和良好对映选择性的此类结构的有机催化合成却很少见。在此,我们报告了一种广泛适用且对映选择性的合成方法,可利用亚砜阴离子(PhSO )作为催化剂,从亚胺和苄基或烷基卤化物合成反式氮丙啶。该方法适用于含有杂芳基、烷基以及富电子和缺电子芳基的底物(33 个实例),产率高,对映选择性好(反式:顺式>20:1)。通过开环反应可以进一步对含环丙基或环丁基的氮丙啶进行官能化,通过四步合成得到了环丁基取代的去甲麻黄碱衍生物。我们提出了一个涉及去质子化苄基亚砜与亚胺可逆加成的反应机理,以解释高反式对映选择性。

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