The electro-oxidation of formic acid on Pt-Pd single crystal bimetallic surfaces

被引:205
作者
Arenz, M [1 ]
Stamenkovic, V
Schmidt, TJ
Wandelt, K
Ross, PN
Markovic, NM
机构
[1] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Mat Sci, Berkeley, CA 94720 USA
[2] Univ Bonn, Inst Phys & Theoret Chem, D-53115 Bonn, Germany
关键词
D O I
10.1039/b306307k
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The interrelationship between the macroscopic kinetic rate of HCOOH oxidation in 0.1 M HClO4 solution and the morphology/composition of the electrode is studied on Pt(111) modified by Pd (denoted hereafter as the Pt(111)-Pd-xML system, 0 < x < 1) and on Pt-Pd bulk single crystal alloy surfaces (denoted hereafter as the PtPdxat%(111) system, x = 6 and x = 25). The Pd surface composition of the Pt(111)-Pd-xML and PtPdxat%(111) electrodes was established previously ex-situ by low energy ion scattering (LEIS) measurements. The nature of adsorbed intermediates (COad) and the electrocatalytic properties (the onset of CO2 formation) at the Pt(111)-Pd-xML and the PtPdxat%(111) interface were studied by FTIR spectroscopy. The results show that Pd atoms either on the Surface or in the Surface have an unique catalytic activity for HCOOH oxidation, with Pd atoms being three (bulk alloys) or five times (Pd films) more active than Pt atoms at 0.4 V. FTIR spectra reveal that on Pt atoms adsorbed CO is produced from dehydration of HCOOH, whereas no CO adsorbed on Pd can be detected although a high production rate of CO, is observed at low potentials, indicating that the reaction can proceed on Pd at low potentials without the Pt typical "poison" formation.
引用
收藏
页码:4242 / 4251
页数:10
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