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碱介导的α-甲基-α-氧代酰胺氮-氧键的同系重排反应

Base-mediated homologative rearrangement of nitrogen-oxygen bonds of -methyl--oxyamides.

作者信息

Malik Monika, Senatore Raffaele, Langer Thierry, Holzer Wolfgang, Pace Vittorio

机构信息

Department of Pharmaceutical Sciences, Division of Pharmaceutical Chemistry, University of Vienna Josef-Holaubek-Platz 2 1090 Vienna Austria

Department of Chemistry, University of Turin Via Giuria 7 10125 Turin Italy.

出版信息

Chem Sci. 2023 Aug 29;14(37):10140-10146. doi: 10.1039/d3sc03216g. eCollection 2023 Sep 27.

Abstract

Due to the well known reactivity of C(O)-N functionalities towards canonical C1-homologating agents ( carbenoids, diazomethane, ylides), resulting in the extrusion of the -centered fragment to carbonyl compounds, formal C1-insertions within N-O bonds still remain obscure. Herein, we document the homologative transformation of -methyl--oxyamides - with high tolerance for diverse -substituents - into -acyl-,-acetals. Under controlled basic conditions, the -methyl group of the same starting materials acts as a competent precursor of the methylene synthon required for the homologation. The logic is levered on the formation of an electrophilic iminium ion ( N-O heterolysis) susceptible to nucleophilic attack by the alkoxide previously expulsed. The procedure documents genuine chemocontrol and flexibility, as judged by the diversity of substituents placed on both amide and nitrogen linchpins. The mechanistic rationale was validated through experiments conducted on D-labeled materials which unambiguously attributed the origin of the methylene fragment to the -methyl group of the starting compounds.

摘要

由于C(O)-N官能团对典型的C1-同系化试剂(类卡宾、重氮甲烷、叶立德)具有众所周知的反应活性,会导致以-为中心的片段被挤出形成羰基化合物,因此N-O键内的形式C1插入反应仍不清楚。在此,我们记录了-甲基--氧酰胺(对各种-取代基具有高耐受性)向-酰基-,-缩醛的同系化转化。在受控的碱性条件下,相同起始原料的-甲基充当同系化所需的亚甲基合成子的合适前体。其原理基于亲电亚胺离子(N-O异裂)的形成,该离子易受先前排出的醇盐的亲核攻击。从酰胺和氮关键部位上取代基的多样性判断,该方法体现了真正的化学控制和灵活性。通过对D标记材料进行的实验验证了其机理原理,这些实验明确将亚甲基片段的来源归因于起始化合物的-甲基。

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