电解
超声波传感器
法拉第效率
电合成
双金属片
催化作用
材料科学
阳极
化学
化学工程
离解(化学)
无机化学
电解水
硝酸盐
产量(工程)
电极
联轴节(管道)
空化
电催化剂
涂层
作者
Chenguang Yin,郝长荣,Yi Guo,Xiaomin Yang,Dongwei Ma,Ke Chu
摘要
ABSTRACT Electrocatalytic C─N coupling offers a feasible route for sustainable synthesis of monomethylamine (MMA), yet it still suffers from poor C/N reactant coactivation and low conversion efficiency. In this study, we propose an innovative ultrasonic electrolysis strategy for efficient MMA electrosynthesis from NO 3 − and CO 2 . A bimetallic COF catalyst (CuBi‐ppc) is rationally designed and employed as a model catalyst. Mechanistic investigations reveal that ultrasonic electrolysis induces the unique acoustic cavitation effect which enriches CO 2 /NO 3 − reactants, promotes water dissociation for active H generation and stabilizes key C/N intermediates to facilitate C─N bond formation, consequently creating a favorable microenvironment to promote C─N coupling for selective MMA synthesis. Under the optimized ultrasonic electrolysis conditions, we achieve the high MMA yield rate of 144.89 mmol h −1 g −1 and Faradaic efficiency of 91.86% along with an excellent stability. These results highlight the great potential of ultrasonic electrolysis strategy for powerful and sustainable organonitrogen electrosynthesis.
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