研究使用掺杂亚氧化铌支撑铂的小醇氧化反应动力学

IF 2.9 Q2 ELECTROCHEMISTRY Electrochemical science advances Pub Date : 2024-05-22 DOI:10.1002/elsa.202300030
Keenan Black-Araujo, Katherine Nguyen, R. Esfahani, E. Easton
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引用次数: 0

摘要

铂纳米颗粒沉积在掺硅的亚氧化铌载体上,形成了被称为 Pt/NbOS 的催化剂。在乙醇和甲醇氧化反应中,该催化剂与用于直接酒精燃料电池的商用 Pt/C 电催化剂进行了比较。循环伏安法和电化学阻抗光谱法表明,在酒精氧化过程中,使用金属氧化物支持物可提供更高的峰值氧化电流和更小的电荷转移电阻。一氧化碳(CO)剥离实验表明,与 Pt/C 相比,Pt/NbOS 对 CO 的去除率更高。在甲醇和乙醇氧化过程中,Pt/NbOS 的表观活化能分别为 13.3 J mol-1 和 11.9 J mol-1,比相同电位下的 Pt/C 低 38% 和 27%。Pt/NbOS 活性的提高归因于活性铂纳米颗粒与 NbOS 支持物之间强烈的金属-支持物相互作用,这证明了它在甲醇和乙醇燃料电池中替代 Pt/C 的实用性。
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Investigating the kinetics of small alcohol oxidation reactions using platinum supported on a doped niobium suboxide support
Platinum nanoparticles deposited on a silicon‐doped niobium suboxide support provided the catalyst known as Pt/NbOS. This was compared to the commercial Pt/C electrocatalyst in the ethanol and methanol oxidation reactions for use in direct alcohol fuel cells. Cyclic voltammetry and electrochemical impedance spectroscopy demonstrate that the employment of the metal oxide support provides higher peak oxidation currents and smaller charge transfer resistances during alcohol oxidation. Carbon monoxide (CO) stripping experiments showed enhanced removal of CO by Pt/NbOS compared to Pt/C. Pt/NbOS shows its smallest apparent activation energies of 13.3 and 11.9 J mol‐1, for methanol and ethanol oxidation respectively, which are 38% and 27% lower than those of Pt/C at the same potentials. This increased activity of Pt/NbOS is attributed to the strong metal‐support interactions between the active Pt nanoparticles and the NbOS support which demonstrate its utility in replacing Pt/C in methanol and ethanol fuel cells.
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来源期刊
CiteScore
3.80
自引率
0.00%
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审稿时长
10 weeks
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