The knowledge about how CO occupies and detaches from specific surface sites on well-structured Pt surfaces provides outstanding information on both dynamics/mobility of COads and oxidation of this molecule under electrochemical conditions. This work reports how the potentiostatic growth of different coverage CO adlayers evolves with time on both cubic and octahedral Pt nanoparticles in acidic medium. Data suggest that during the growth of the CO adlayer, COads molecules slightly shift toward low coordination sites only on octahedral Pt nanoparticles, so that these undercoordinated sites are the first filled on octahedral Pt nanoparticles. Conversely, on cubic Pt nanoparticles, adsorbed CO behaves as an immobile species, and low coordinated...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
To understand how the CO oxidation reaction proceeds on nanoparticles, which have complex surface st...
The knowledge about how CO occupies and detaches from specific surface sites on well-structured Pt s...
The knowledge about how CO occupies and detaches from specific surface sites on well-structured Pt s...
In this work, the behavior of the CO electro-oxidation reaction on shape-controlled Pt nanoparticles...
In this work, the behavior of the CO electro-oxidation reaction on shape-controlled Pt nanoparticles...
To understand how the CO oxidation reaction proceeds on nanoparticles, which have complex surface st...
An understanding of the oxidation of chemisorbed CO (CO<sub>chem</sub>) on Pt nanoparticle surfaces ...
International audienceAn understanding of the oxidation of chemisorbed CO (CO(chem)) on Pt nanoparti...
The electro-oxidation of CO adsorbed on Pt nanoparticles is an important reaction in fuel cells. Des...
The shape of metal nanoparticles can dramatically depend on reaction conditions. While Pt nanopartic...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
To understand how the CO oxidation reaction proceeds on nanoparticles, which have complex surface st...
The knowledge about how CO occupies and detaches from specific surface sites on well-structured Pt s...
The knowledge about how CO occupies and detaches from specific surface sites on well-structured Pt s...
In this work, the behavior of the CO electro-oxidation reaction on shape-controlled Pt nanoparticles...
In this work, the behavior of the CO electro-oxidation reaction on shape-controlled Pt nanoparticles...
To understand how the CO oxidation reaction proceeds on nanoparticles, which have complex surface st...
An understanding of the oxidation of chemisorbed CO (CO<sub>chem</sub>) on Pt nanoparticle surfaces ...
International audienceAn understanding of the oxidation of chemisorbed CO (CO(chem)) on Pt nanoparti...
The electro-oxidation of CO adsorbed on Pt nanoparticles is an important reaction in fuel cells. Des...
The shape of metal nanoparticles can dramatically depend on reaction conditions. While Pt nanopartic...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
The oxidation of CO adlayers, formed by direct dosing from a GO-saturated solution, and bulk CO has ...
To understand how the CO oxidation reaction proceeds on nanoparticles, which have complex surface st...