Institut für Organische Chemie, Heidelberg University, Heidelberg, Germany.
Department of Chemistry, Islamic Azad University, Central Tehran Branch, Poonak, Tehran, Iran.
Nat Commun. 2023 Feb 14;14(1):831. doi: 10.1038/s41467-023-36190-z.
Azepinone derivatives are privileged in organic synthesis and pharmaceuticals. Synthetic approaches to these frameworks are limited to complex substrates, strong bases, high power UV light or noble metal catalysis. We herein report a mild synthesis of azepinone derivatives by a photochemical generation of 2-aryloxyaryl nitrene, [2 + 1] annulation, ring expansion/water addition cascade reaction without using any metal catalyst. Among the different nitrene precursors tested, 2-aryloxyaryl azides performed best under blue light irradiation and Brønsted acid catalysis. The reaction scope is broad and the obtained products underwent divergent transformations to afford other related compounds. A computational study suggests a pathway involving a step-wise aziridine formation, followed by a ring-expansion to the seven-membered heterocycle. Finally, water is added in a regio-selective manner, this is accelerated by the added TsOH.
氮杂环庚酮衍生物在有机合成和药物领域具有重要地位。目前,这些结构的合成方法仅限于使用复杂的底物、强碱、强紫外光或贵金属催化。本文报道了一种温和的合成氮杂环庚酮衍生物的方法,该方法通过光化学生成 2-芳氧基芳基氮宾,[2 + 1]环加成,环扩张/水加成级联反应,无需使用任何金属催化剂。在所测试的不同氮宾前体中,2-芳氧基芳基叠氮化物在蓝光照射和布朗斯特酸催化下表现最佳。该反应具有广泛的适用范围,所得产物可进一步进行转化,得到其他相关化合物。计算研究表明,该反应可能经历了逐步形成氮杂环丙烷的过程,然后进行环扩张得到七元杂环。最后,水以区域选择性的方式加入,加入的对甲苯磺酸可以加速这一步反应。