电催化剂
法拉第效率
电解质
无机化学
催化作用
电解
氧化物
双金属片
苯甲酸
双功能
可逆氢电极
电化学
苯甲醇
镍
材料科学
化学
电极
工作电极
有机化学
物理化学
作者
Yizhen Zhu,Xiangyu Chen,Yuanyao Zhang,Zhifei Zhu,Handan Chen,Kejie Chai,Weiming Xu
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2024-08-07
卷期号:29 (16): 3734-3734
标识
DOI:10.3390/molecules29163734
摘要
Electrocatalytic alcohol oxidation (EAO) is an attractive alternative to the sluggish oxygen evolution reaction in electrochemical hydrogen evolution cells. However, the development of high-performance bifunctional electrocatalysts is a major challenge. Herein, we developed a nitrogen-doped bimetallic oxide electrocatalyst (WO-N/NF) by a one-step hydrothermal method for the selective electrooxidation of benzyl alcohol to benzoic acid in alkaline electrolytes. The WO-N/NF electrode features block-shaped particles on a rough, inhomogeneous surface with cracks and lumpy nodules, increasing active sites and enhancing electrolyte diffusion. The electrode demonstrates exceptional activity, stability, and selectivity, achieving efficient benzoic acid production while reducing the electrolysis voltage. A low onset potential of 1.38 V (vs. RHE) is achieved to reach a current density of 100 mA cm−2 in 1.0 M KOH electrolyte with only 0.2 mmol of metal precursors, which is 396 mV lower than that of water oxidation. The analysis reveals a yield, conversion, and selectivity of 98.41%, 99.66%, and 99.74%, respectively, with a Faradaic efficiency of 98.77%. This work provides insight into the rational design of a highly active and selective catalyst for electrocatalytic alcohol oxidation.
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