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Dearomative Photocatalytic Construction of Bridged 1,3-Diazepanes

机译:桥梁1,3-二氮杂物的辅助光催化建设

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The construction of diverse sp(3)-rich skeletal ring systems is of importance to drug discovery programmes and natural product synthesis. Herein, we report the photocatalytic construction of 2,7-diazabicyclo[3.2.1]octanes (bridged 1,3-diazepanes) via a reductive diversion of the Minisci reaction. The fused tricyclic product is proposed to form via radical addition to the C4 position of 4-substituted quinoline substrates, with subsequent Hantzsch ester-promoted reduction to a dihydropyridine intermediate which undergoes in situ two-electron ring closure to form the bridged diazepane architecture. A wide scope of N-arylimine and quinoline derivatives was demonstrated and good efficiency was observed in the construction of sterically congested all-carbon quaternary centers. Computational and experimental mechanistic studies provided insights into the reaction mechanism and observed regioselectivity/diastereoselectivity.
机译:多样化的SP(3) - 中间骨架环系统对药物发现程序和天然产品合成具有重要性。 在此,我们通过MINISCI反应的还原转移报告了2,7-Diazabidclo [3.2.1]辛烷值(桥连1,3-二氮杂物)的光催化结构。 熔融三环产品被提出通过基团除去4-取代的喹啉基材的C4位置,随后的汉辛斯酯 - 促进的二氢吡啶中间体还原,其原位双电子环封闭以形成桥梁的二氮己烷架构。 在空中拥挤的全碳四元中心的构建中,观察到了众多N-亚芳基和喹啉衍生物的范围。 计算和实验机制研究提供了反应机制的见解和观察到的区域选择性/非对映选择性。

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