State Key Laboratory and Institute of Elemento-Organic Chemistry, College of Chemistry, Nankai University, Tianjin, China.
Department of Chemistry, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Republic of Korea.
Nat Chem. 2021 Apr;13(4):378-385. doi: 10.1038/s41557-021-00650-0. Epub 2021 Mar 22.
N-N linkages are found in many natural compounds and endow fascinating structural and functional properties. In comparison to the myriad methods for the construction of C-N bonds, chemistry for N-N coupling, especially in an intermolecular fashion, remains underdeveloped. Here, we report a nitrene-mediated intermolecular N-N coupling of dioxazolones and arylamines under iridium or iron catalysis. These reactions offer a simple and efficient method for the synthesis of various hydrazides from readily available carboxylic acid and amine precursors. Although the Ir-catalysed conditions usually give higher N-N coupling yield than the Fe-catalysed conditions, the reactions of sterically more demanding dioxazolones derived from α-substituted carboxylic acids work much better under the Fe-catalysed conditions. Mechanistic studies revealed that the nitrogen atom of Ir acyl nitrene intermediates has strong electrophilicity and can undergo nucleophilic attack with arylamines with the assistance of Cl···HN hydrogen bonding to form the N-N bond with high efficiency and chemoselectivity.
N-N 键在许多天然化合物中都有发现,并赋予其迷人的结构和功能特性。与构建 C-N 键的无数方法相比,N-N 键的化学偶联,特别是在分子间的方式,仍然不够发达。在这里,我们报道了在铱或铁催化下,二恶唑酮和芳胺之间的氮烯介导的分子间 N-N 键偶联。这些反应为从易得的羧酸和胺前体制备各种酰肼提供了一种简单有效的方法。虽然 Ir 催化条件通常比 Fe 催化条件得到更高的 N-N 键偶联产率,但来自α取代羧酸的空间位阻更大的二恶唑酮的反应在 Fe 催化条件下效果更好。机理研究表明,Ir 酰基氮烯中间体的氮原子具有强亲电性,并能在 Cl···HN 氢键的协助下与芳胺发生亲核进攻,以高效率和化学选择性形成 N-N 键。