The barrier to CO oxidation on Pt catalysts is the strongly bound adsorbed CO, which inhibits O-2 adsorption and hinders CO2 formation. Using reaction studies and in situ X-ray spectroscopy with colloidally prepared, monodisperse similar to 2 nm Pt and PtSn nanoparticle catalysts, we show that the addition of Sn to Pt provides distinctly different reaction sites and a more efficient reaction mechanism for CO oxidation compared to pure Pt catalysts. To probe the influence of Sn, we intentionally poisoned the Pt component of the nanoparticle catalysts using a CO-rich atmosphere. With a reaction environment comprised of 100 Torr CO and 40 Torr O-2 and a temperature range between 200 and 300 degrees C, Pt and PtSn catalysts exhibited activation...
+ING+FRM:YSC:NOG:LCSInternational audienceThe nature of the surface intermediates involved in CO hyd...
Density functional theory calculations are used to investigate CO adsorption, dissociation and SnOX ...
Platinum–tin surfaces are active for CO oxidation, but their activity and the effects of tin oxide p...
The role of Sn on the catalytic activity for CO and formic acid oxidation is studied by comparing th...
The role of Sn on the catalytic activity for CO and formic acid oxidation is studied by comparing th...
Segregation induced formation of oxide/metal interfaces can significantly influence the catalytic ac...
+ING+FRM:LCS:YSCInternational audienceThis communication describes a yet unreported mode of alloy se...
+ING+FRM:LCS:YSCInternational audienceThis communication describes a yet unreported mode of alloy se...
The bifunctional mechanism is well-acknowledged for the promoted CO oxidation on Pt-based bimetallic...
In our previous paper, we described in detail studies of Sn influence on electrocatalytic activity o...
In our previous paper, we described in detail studies of Sn influence on electrocatalytic activity o...
We have investigated the surface composition of a well-ordered Pt3Sn(111) surface during CO oxidatio...
We have investigated the surface composition of a well-ordered Pt3Sn(111) surface during CO oxidatio...
Pt‐based materials are widely used as heterogeneous catalysts, in particular for pollutant removal a...
Temperature-programmed reduction using 6kPaH2 suggests that a sample consisting of 3 percent Pt supp...
+ING+FRM:YSC:NOG:LCSInternational audienceThe nature of the surface intermediates involved in CO hyd...
Density functional theory calculations are used to investigate CO adsorption, dissociation and SnOX ...
Platinum–tin surfaces are active for CO oxidation, but their activity and the effects of tin oxide p...
The role of Sn on the catalytic activity for CO and formic acid oxidation is studied by comparing th...
The role of Sn on the catalytic activity for CO and formic acid oxidation is studied by comparing th...
Segregation induced formation of oxide/metal interfaces can significantly influence the catalytic ac...
+ING+FRM:LCS:YSCInternational audienceThis communication describes a yet unreported mode of alloy se...
+ING+FRM:LCS:YSCInternational audienceThis communication describes a yet unreported mode of alloy se...
The bifunctional mechanism is well-acknowledged for the promoted CO oxidation on Pt-based bimetallic...
In our previous paper, we described in detail studies of Sn influence on electrocatalytic activity o...
In our previous paper, we described in detail studies of Sn influence on electrocatalytic activity o...
We have investigated the surface composition of a well-ordered Pt3Sn(111) surface during CO oxidatio...
We have investigated the surface composition of a well-ordered Pt3Sn(111) surface during CO oxidatio...
Pt‐based materials are widely used as heterogeneous catalysts, in particular for pollutant removal a...
Temperature-programmed reduction using 6kPaH2 suggests that a sample consisting of 3 percent Pt supp...
+ING+FRM:YSC:NOG:LCSInternational audienceThe nature of the surface intermediates involved in CO hyd...
Density functional theory calculations are used to investigate CO adsorption, dissociation and SnOX ...
Platinum–tin surfaces are active for CO oxidation, but their activity and the effects of tin oxide p...