In the course of our studies on CO oxidation over Au/Mg(OH)2 we have discovered a catalyst which exhibits an apparent negative activation energy when studied under ultra‐dry conditions (80 ppb moisture content). A review of current literature suggests that the oxidation of CO may occur by a reaction between CO and OH radicals and not by oxygen as previously thought. Substantial differences in catalytic behaviour between low and high temperature suggest that the reaction is complex and that more than one reaction pathway is present
Oxidation of CO over Co3O4 at ambient temperature was studied with flow reactor experiments, and in-...
Gold is considered as noble among other metals because of its resistance to oxidation and corrosion...
The catalytic CO oxidation reaction with atomically adsorbed oxygen on Ag(110) has been analyzed by ...
Aiming at a better understanding of the unusual low-temperature CO oxidation reaction behavior on Au...
Au/Mg(OH)2 catalysts have been reported to be far more active in the catalytic low-temperature CO ox...
Catalysts consisting of ultra-fine gold particles supported on iron oxide have been synthesized by b...
Highly active supported gold catalysts frequently undergo substantial decrease in activity due to de...
The CO oxidation over Co3O4 and Co3O4/Al2O3 has been investigated using flow reactor and in situ FTI...
Although highly dispersed Au catalysts with Au nanoparticles (NPs) of a few nanometers in diameter a...
The objective of the present work was to resolve mechanistic details, on a molecular scale, as well ...
The oxidation of CO by Au/Fe2O3 and Au/ZnO catalysts is compared in the very early stages of the rea...
O2 adsorption is a key process for further understanding the mechanism of selective CO oxidation (SC...
Oxidation of CO over Co3O4 at ambient temperature was studied with flow reactor experiments, and in-...
Au/CoCeOx catalysts were prepared by I deposition-precipitation method. Au chemical states were cont...
Au/Fe2O3 catalysts has long been demonstrated to be highly active for CO oxidation at low temperatur...
Oxidation of CO over Co3O4 at ambient temperature was studied with flow reactor experiments, and in-...
Gold is considered as noble among other metals because of its resistance to oxidation and corrosion...
The catalytic CO oxidation reaction with atomically adsorbed oxygen on Ag(110) has been analyzed by ...
Aiming at a better understanding of the unusual low-temperature CO oxidation reaction behavior on Au...
Au/Mg(OH)2 catalysts have been reported to be far more active in the catalytic low-temperature CO ox...
Catalysts consisting of ultra-fine gold particles supported on iron oxide have been synthesized by b...
Highly active supported gold catalysts frequently undergo substantial decrease in activity due to de...
The CO oxidation over Co3O4 and Co3O4/Al2O3 has been investigated using flow reactor and in situ FTI...
Although highly dispersed Au catalysts with Au nanoparticles (NPs) of a few nanometers in diameter a...
The objective of the present work was to resolve mechanistic details, on a molecular scale, as well ...
The oxidation of CO by Au/Fe2O3 and Au/ZnO catalysts is compared in the very early stages of the rea...
O2 adsorption is a key process for further understanding the mechanism of selective CO oxidation (SC...
Oxidation of CO over Co3O4 at ambient temperature was studied with flow reactor experiments, and in-...
Au/CoCeOx catalysts were prepared by I deposition-precipitation method. Au chemical states were cont...
Au/Fe2O3 catalysts has long been demonstrated to be highly active for CO oxidation at low temperatur...
Oxidation of CO over Co3O4 at ambient temperature was studied with flow reactor experiments, and in-...
Gold is considered as noble among other metals because of its resistance to oxidation and corrosion...
The catalytic CO oxidation reaction with atomically adsorbed oxygen on Ag(110) has been analyzed by ...