羟胺
环己酮
己内酰胺
环己酮肟
化学
产量(工程)
有机化学
材料科学
催化作用
冶金
作者
Yandong Wu,Wei Chen,Yimin Jiang,Yanzhi Xu,Bo Zhou,Leitao Xu,Chao Xie,Ming Yang,Mengyi Qiu,Dongdong Wang,Qie Liu,Qinghua Liu,Shuangyin Wang,Yuqin Zou
标识
DOI:10.1002/anie.202305491
摘要
Abstract Synthesis of cyclohexanone oxime via the cyclohexanone‐hydroxylamine process is widespread in the caprolactam industry, which is an upstream industry for nylon‐6 production. However, there are two shortcomings in this process, harsh reaction conditions and the potential danger posed by explosive hydroxylamine. In this study, we presented a direct electrosynthesis of cyclohexanone oxime using nitrogen oxides and cyclohexanone, which eliminated the usage of hydroxylamine and demonstrated a green production of caprolactam. With the Fe electrocatalysts, a production rate of 55.9 g h −1 g cat −1 can be achieved in a flow cell with almost 100 % yield of cyclohexanone oxime. The high efficiency was attributed to their ability of accumulating adsorbed hydroxylamine and cyclohexanone. This study provides a theoretical basis for electrocatalyst design for C−N coupling reactions and illuminates the tantalizing possibility to upgrade the caprolactam industry towards safety and sustainability.
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