He Meng, Wu Yongmeng, Li Rui, Wang Yuting, Liu Cuibo, Zhang Bin
Department of Chemistry, School of Science, Institute of Molecular Plus, Tianjin University, Tianjin, 300072, China.
Nat Commun. 2023 Aug 22;14(1):5088. doi: 10.1038/s41467-023-40892-9.
Electrocatalytic C - N bond formation from inorganic nitrogen wastes is an emerging sustainable method for synthesizing organic amines but is limited in reaction scope. Integrating heterogeneous and homogeneous catalysis for one-pot reactions to construct C - N bonds is highly desirable. Herein, we report an aqueous pulsed electrochemistry-mediated transformation of nitrite and arylboronic acids to arylamines with high yields. The overall process involves nitrite electroreduction to ammonia over a Cu nanocoral cathode and subsequent coupling of NH with arylboronic acids catalyzed by in situ dissolved Cu(II) under a switched anodic potential. This pulsed protocol also promotes the migration of nucleophilic ArB(OH) and causes the consumption of OH near the cathode surface, accelerating C - N formation and suppressing phenol byproducts. Cu(II) can be recycled via facile electroplating. The wide substrate scope, ready synthesis of N-labelled arylamines, and methodological expansion to cycloaddition and Click reactions highlight the great promise.
通过无机氮废物进行电催化C-N键形成是一种新兴的可持续合成有机胺的方法,但反应范围有限。将多相催化和均相催化整合用于一锅法反应以构建C-N键是非常有必要的。在此,我们报道了一种水相脉冲电化学介导的将亚硝酸盐和芳基硼酸高产率转化为芳基胺的方法。整个过程包括在铜纳米珊瑚阴极上亚硝酸盐电还原为氨,以及随后在切换的阳极电位下原位溶解的Cu(II)催化NH与芳基硼酸的偶联。这种脉冲方案还促进了亲核性ArB(OH)的迁移,并导致阴极表面附近OH的消耗,加速了C-N的形成并抑制了苯酚副产物。Cu(II)可以通过简便的电镀进行循环利用。广泛的底物范围、N-标记芳基胺的简便合成以及环加成和点击反应的方法扩展突出了其巨大的前景。