Ning Yongquan, Chen Hongzhu, Ning Yongyue, Zhang Jin, Bi Xihe
Department of Chemistry, Northeast Normal University, 130024, Changchun, China.
State Key Laboratory of Elemento-Organic Chemistry, Nankai University, 300071, Tianjin, China.
Angew Chem Int Ed Engl. 2024 Mar 18;63(12):e202318072. doi: 10.1002/anie.202318072. Epub 2024 Feb 12.
Azetidines, being four-membered N-heterocycles, possess significant potential in contemporary medicinal chemistry owing to their favorable pharmacokinetic properties. Regrettably, the incorporation of functionalized azetidines into pharmaceutical lead structures has been impeded by the absence of efficient synthetic methods for their synthesis. In this study, a Rh-catalyzed one-carbon ring expansion of aziridines with vinyl-N-triftosylhydrazones is presented, which facilitates the synthesis of high value-added 2-alkenyl azetidine products. This research represents the first example of ring expansion of aziridines enabled by vinyl carbenes. Additionally, a one-pot two-step protocol, initiated from cinnamaldehyde, was successfully achieved, offering a step-economical and facile approach for the synthesis of these compounds. The pivotal aspect of this successful transformation lies in the in situ formation of an alkenyl aziridinium ylide intermediate. Experimental investigations, coupled with computational studies, suggest that a diradical pathway is involved in the reaction mechanism.
氮杂环丁烷作为四元氮杂环化合物,因其良好的药代动力学性质,在当代药物化学中具有巨大潜力。遗憾的是,由于缺乏有效的合成方法,将功能化氮杂环丁烷引入药物先导结构的过程受到了阻碍。在本研究中,我们报道了一种铑催化的氮丙啶与乙烯基 - N - 三氟甲磺酰腙的单碳环扩展反应,该反应有助于合成高附加值的2 - 烯基氮杂环丁烷产物。本研究是通过乙烯基卡宾实现氮丙啶环扩展的首例。此外,我们成功实现了从肉桂醛出发的一锅两步法,为这些化合物的合成提供了一种步骤经济且简便的方法。这一成功转化的关键在于原位形成烯基氮丙啶叶立德中间体。实验研究与计算研究表明,反应机理涉及双自由基途径。