Wang Wei, Peng Yuanyuan, Liu Yang, Lin Yanchun, Zhao Fei, Chen Qinlin, Xuan Liangming, Yan Qiongjiao, Chen Fen-Er, Zhou Hui
College of Chemistry, Central China Normal University (CCNU), Wuhan, Hubei, PR China.
Pharmaceutical Research Institute, School of Chemical Engineering & Pharmacy, Wuhan Institute of Technology, Wuhan, Hubei, PR China.
Nat Commun. 2025 Jan 2;16(1):168. doi: 10.1038/s41467-024-55488-0.
C-C and C-X bond forming reactions are essential tools in organic synthesis, constantly revolutionizing human life. Among the key methods for constructing new chemical bonds are nucleophilic addition reactions involving imines. However, the inherent challenges in synthesizing and storing imines have stimulated interest in designing stable precursors, which generates imines in situ during the reaction. This approach offers a promising alternative to traditional strategies and holds significant potential for future applications. Here we report a direct and general nucleophilic addition of imines with cost-effective feedstocks and easily accessible nucleophiles, specifically utilizing N‑functionalized hydroxylamine reagents as bench-stable precursors. This methodology streamlines the synthesis of various products, such as amino acid derivatives, through a wide range of reaction types, including C-C, C-N, C-O, and C-S bond constructions. Mechanistic studies and DFT calculations provide insights into a plausible reaction mechanism that supports the in-situ imine formation.
碳 - 碳键和碳 - 卤键形成反应是有机合成中必不可少的工具,不断地改变着人类生活。构建新化学键的关键方法之一是涉及亚胺的亲核加成反应。然而,亚胺合成和储存中固有的挑战激发了人们对设计稳定前体的兴趣,这些前体在反应过程中原位生成亚胺。这种方法为传统策略提供了一种有前景的替代方案,并在未来应用中具有巨大潜力。在此,我们报道了一种直接且通用的亚胺与经济高效的原料及易于获取的亲核试剂的亲核加成反应,具体使用N - 官能化羟胺试剂作为易于储存的前体。该方法通过包括碳 - 碳键、碳 - 氮键、碳 - 氧键和碳 - 硫键构建在内的多种反应类型,简化了各种产物(如氨基酸衍生物)的合成。机理研究和密度泛函理论(DFT)计算为支持原位亚胺形成的合理反应机理提供了见解。