化学
电合成
醛
肟
电化学
催化作用
选择(遗传算法)
联轴节(管道)
直接耦合
组合化学
有机化学
电极
物理化学
冶金
材料科学
人工智能
计算机科学
电气工程
工程类
作者
Wei Chen,Yandong Wu,Yimin Jiang,Guangxing Yang,Yingying Li,Leitao Xu,Ming Yang,Binbin Wu,Yuping Pan,Yanzhi Xu,Qinghua Liu,Chen Chen,Feng Peng,Shuangyin Wang,Yuqin Zou
摘要
Aqueous electrochemical coupling reactions, which enable the green synthesis of complex organic compounds, will be a crucial tool in synthetic chemistry. However, a lack of informed approaches for screening suitable catalysts is a major obstacle to its development. Here, we propose a pioneering electrochemical reductive coupling reaction toward direct electrosynthesis of oxime from NOx and aldehyde. Through integrating experimental and theoretical methods, we screen out the optimal catalyst, i.e., metal Fe catalyst, that facilitates the enrichment and C–N coupling of key reaction intermediates, all leading to high yields (e.g., ∼99% yield of benzaldoxime) for the direct electrosynthesis of oxime over Fe. With a divided flow reactor, we achieve a high benzaldoxime production of 22.8 g h–1 gcat–1 in ∼94% isolated yield. This work not only paves the way to the industrial mass production of oxime via electrosynthesis but also offers references for the catalyst selection of other electrochemical coupling reactions.
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