乙胺
乙腈
氢
化学
曲面(拓扑)
材料科学
物理化学
有机化学
数学
几何学
作者
Yulong Tang,J. Li,Yichao Lin,Miaomiao Cheng,Shuibo Wang,Ziqi Tian,Junjie Zhou,H. M. Zhang,Yunan Wang,Liang Chen
标识
DOI:10.1038/s41467-025-57462-w
摘要
The electrochemical reduction of acetonitrile (AN) to ethylamine (EA) is an attractive yet challenging process, primarily due to the competing hydrogen evolution reaction (HER). This study demonstrates the ability to halt the HER at Volmer step, where protons migrate to the unsaturated bond of AN on a self-supported CuO@Cu heterostructure. The CuO@Cu catalyst exhibits nearly 100% Faradaic efficiency (FE) over the entire range of potentials tested from -0.1 to -0.4 V vs. RHE, demonstrating remarkable stability over 1000 h at a constant current density of 0.2 A cm-2. CuO is identified as the active component driving the reaction, while the metallic Cu facilitates efficient electron transfer. Theoretical simulations and experimental evidences indicate that a synergistic hydrogenation process contributes to the AN reduction reaction (ARR), which involves both surface hydrogen migration and proton addition from solution. This study provides an insight into understanding of ARR process, and suggests an efficient strategy to enhance the electrochemical hydrogenation of organic molecules by regulating the Volmer step.
科研通智能强力驱动
Strongly Powered by AbleSci AI