We sought to establish a new standard for direct comparison of electrocatalytic activity with surface structure using in situ scanning tunneling microscopy (STM) by examining the electrooxidation of CO in a CO-saturated solution on Pt(111) electrodes with steps, with combined electrochemical measurements, in situ STM, and density functional theory (DFT). On pristine Pt(111) surfaces with initially disordered (111) steps, CO oxidation commences at least 0.5 V lower than that for the main oxidation peak at ca. 0.8–1.0 V vs the reversible hydrogen electrode in aqueous perchloric acid solution. As the potential was cycled between 0.07 and 0.95 V, the CO oxidation activity gradually decreased until only the main oxidation peak remained. In sit...
Within the area of surface science, one of the “holy grails” is to directly visualize a chemical rea...
The effect of the electrode potential in the reactivity of platinum stepped single crystal electrode...
The kinetics of the electrochem. oxidn. of a CO adlayer on Pt[n(111)*(111)] electrodes in 0.5M H2SO4...
We present an experimental study of the CO electro-oxidation on Pt(100)-(1 × 1) electrodes employing...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The co-adsorption of CO and OH on two Pt stepped surfaces vicinal to the (111) orientation has been ...
Since catalytic performance of platinum–metal (Pt–M) nanoparticles is primarily determined by the ch...
In-situ studies of CO adsorption by surface x-ray scattering (SXS) and Fourier transform infrared (F...
In most applications, electrocatalysts exhibit a large surface area to volume ratio, for example usi...
Oxide formation plays an important role in the degradation of Pt electrocatalysts. However, the exac...
International audienceAn understanding of the oxidation of chemisorbed CO (CO(chem)) on Pt nanoparti...
In voltammetric CO stripping experiments in acid media, CO pre-oxidation usually takes place on cata...
An understanding of the oxidation of chemisorbed CO (CO<sub>chem</sub>) on Pt nanoparticle surfaces ...
We consider theoretical models for CO monolayer oxidation on stepped Pt single-crystal electrodes an...
Within the area of surface science, one of the “holy grails” is to directly visualize a chemical rea...
The effect of the electrode potential in the reactivity of platinum stepped single crystal electrode...
The kinetics of the electrochem. oxidn. of a CO adlayer on Pt[n(111)*(111)] electrodes in 0.5M H2SO4...
We present an experimental study of the CO electro-oxidation on Pt(100)-(1 × 1) electrodes employing...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The co-adsorption of CO and OH on two Pt stepped surfaces vicinal to the (111) orientation has been ...
Since catalytic performance of platinum–metal (Pt–M) nanoparticles is primarily determined by the ch...
In-situ studies of CO adsorption by surface x-ray scattering (SXS) and Fourier transform infrared (F...
In most applications, electrocatalysts exhibit a large surface area to volume ratio, for example usi...
Oxide formation plays an important role in the degradation of Pt electrocatalysts. However, the exac...
International audienceAn understanding of the oxidation of chemisorbed CO (CO(chem)) on Pt nanoparti...
In voltammetric CO stripping experiments in acid media, CO pre-oxidation usually takes place on cata...
An understanding of the oxidation of chemisorbed CO (CO<sub>chem</sub>) on Pt nanoparticle surfaces ...
We consider theoretical models for CO monolayer oxidation on stepped Pt single-crystal electrodes an...
Within the area of surface science, one of the “holy grails” is to directly visualize a chemical rea...
The effect of the electrode potential in the reactivity of platinum stepped single crystal electrode...
The kinetics of the electrochem. oxidn. of a CO adlayer on Pt[n(111)*(111)] electrodes in 0.5M H2SO4...