科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Advanced Materials2026-03-17· Electrosynthesis

Inter‐Atomic Synergy on Single‐Atom Alloy Promotes Cyclohexanone Oxime Electrosynthesis

Panlong Zhai, Chen Wang, Guan Sheng, C. Ye, Jungang Hou, Qinfen Gu, Tao Ling, Ye Zhu, Pei Liang, Xin Wang, Jieqiong Shan

原始摘要(英文原文)· Original abstract
ABSTRACT The electrosynthesis of cyclohexanone oxime from cyclohexanone and nitrogenous feedstock driven by renewable electricity presents a sustainable alternative to energy‐intensive and hazardous industrial processes. However, achieving high activity and selectivity is challenged by the over‐reduction of key intermediates and the lack of effective sites for C─N coupling. Herein, we report a Fe 1 Bi single‐atom alloy (Fe 1 Bi SAA) featuring Fe‐Bi atomic interfaces that collaborate for the one‐pot electrosynthesis of cyclohexanone oxime. The Fe 1 Bi SAA achieves a remarkable Faradaic efficiency of 70.9% and a yield rate of 0.94 mmol cm −2 h −1 for cyclohexanone oxime. Combined in situ electrochemical spectroscopic measurements and density functional theory calculations reveal an atomic‐scale synergistic mechanism: dispersed Fe sites adsorb and activate cyclohexanone, while adjacent Bi sites selectively reduce nitrite to the key hydroxylamine intermediate. The techno‐economic analysis based on flow electrolyzer operation confirms the potential economic viability of the electrosynthesis of cyclohexanone oxime. This work provides profound atomic‐level insight into cooperative catalysis for C─N coupling reactions toward the electrosynthesis of value‐added organonitrogen compounds.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Inter‐Atomic Synergy on Single‐Atom Alloy Promotes Cyclohexanone Oxime Electrosynthesis — 科研速览 Science Skim