化学
纳米材料基催化剂
双金属片
电催化剂
催化作用
三元运算
甲醇
铂金
乙二醇
电化学
化学工程
钌
无机化学
镍
电极
物理化学
有机化学
计算机科学
工程类
程序设计语言
作者
Tai Thien Huynh,Quyen Huynh,Qui Van Nguyen,Hau Quoc Pham
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2023-11-22
卷期号:62 (49): 20477-20487
被引量:23
标识
DOI:10.1021/acs.inorgchem.3c03518
摘要
Ternary Pt-based structures are a positive progress in addressing the disadvantages of monometallic and bimetallic Pt-based alloys for the electrochemical oxidation process of simple alcohols, which is a vital half-reaction in fuel cell technologies. We herein report a facile NaBH4-assisted ethylene glycol reduction process for fabricating a series of nanosized PtRuNi ternary alloys to explore the relationship between physicochemical properties and electrocatalytic behaviors for the acidic methanol oxidation reaction (MOR). Owing to a balance between lattice strain and synergistic effects, the Pt60Ru20Ni20/C electrocatalyst shows the highest MOR efficiency with the mass activity/specific activity of 844.48 mA mgMetal-1/1.93 mA cm-2, being a 1.94 and 2.38 times increase compared to those of the PtRu catalyst, respectively. Also, the Pt60Ru20Ni20/C catalyst possesses superior CO-tolerance and durability in strongly acidic electrolytes. This work suggests that optimizing the surface strain and electronic effects can boost the overall MOR efficiency of multicomponent Pt-based materials, which can help to further develop next-generation catalysts for energy conversion-related technologies.
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