Understanding dynamic changes of catalytically active nanostructures under reaction conditions is a pivotal challenge in catalysis research, which has been extensively addressed in metal nanoparticles but is less explored in supported oxide nanocatalysts. Here, structural changes of iron oxide (FeOx) nanostructures supported on Pt in a gaseous environment were examined by scanning tunneling microscopy, ambient pressure X-ray photoelectron spectroscopy, and in situ X-ray absorption spectroscopy using both model systems and real catalysts. O-Fe (FeO) bilayer nanostructures can be stabilized on Pt surfaces in reductive environments such as vacuum conditions and H-2-rich reaction gas, which are highly active for low temperature CO oxidation. In...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
The adsorption of co on pt group metals, as a most fundamental elementary reaction step, has been wi...
Structural changes of FeOx nanostructures supported on Pt(111) and Pt foil with response to oxidatio...
Using Fe-Pt(111) model catalysts, we show that surface structure of the bimetallic Fe-Pt(111) cataly...
Active oxide nanolayers can be stabilized on noble metal surfaces through interface confinement effe...
The evolution of a Fe/z'-TiOx/Pt(111) model catalyst in ultrahigh vacuum, studied by advanced surfac...
The evolution of a Fe/z'-TiOx/Pt(111) model catalyst in ultrahigh vacuum, studied by advanced surfac...
The evolution of a Fe/z\u2032-TiOx/Pt(111) model catalyst in ultrahigh vacuum, studied by advanced s...
Inverse oxide/metal model systems are frequently used to investigate catalytic structure-function re...
Inverse oxide/metal model systems are frequently used to investigate catalytic structure-function re...
Metal-support interactions are frequently invoked to explain the enhanced catalytic activity of meta...
International audienceAbstract Inverse oxide/metal model systems are frequently used to investigate ...
The adsorption of CO on Pt group metals, as a most fundamental elementary reaction step, has been wi...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
The adsorption of co on pt group metals, as a most fundamental elementary reaction step, has been wi...
Structural changes of FeOx nanostructures supported on Pt(111) and Pt foil with response to oxidatio...
Using Fe-Pt(111) model catalysts, we show that surface structure of the bimetallic Fe-Pt(111) cataly...
Active oxide nanolayers can be stabilized on noble metal surfaces through interface confinement effe...
The evolution of a Fe/z'-TiOx/Pt(111) model catalyst in ultrahigh vacuum, studied by advanced surfac...
The evolution of a Fe/z'-TiOx/Pt(111) model catalyst in ultrahigh vacuum, studied by advanced surfac...
The evolution of a Fe/z\u2032-TiOx/Pt(111) model catalyst in ultrahigh vacuum, studied by advanced s...
Inverse oxide/metal model systems are frequently used to investigate catalytic structure-function re...
Inverse oxide/metal model systems are frequently used to investigate catalytic structure-function re...
Metal-support interactions are frequently invoked to explain the enhanced catalytic activity of meta...
International audienceAbstract Inverse oxide/metal model systems are frequently used to investigate ...
The adsorption of CO on Pt group metals, as a most fundamental elementary reaction step, has been wi...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
The adsorption of co on pt group metals, as a most fundamental elementary reaction step, has been wi...