Multifrequential oscillating spatiotemporal patterns in the catalytic hydrogen oxidation on rhodium have been observed in situ in the 10 -6 mbar pressure range using photoemission electron microscopy. The effect is manifested by periodic chemical waves, which travel over the polycrystalline Rh surface and change their oscillation frequency while crossing boundaries between different Rh(hkl) domains. Each crystallographically specific μm-sized Rh(hkl) domain exhibits an individual wave pattern and oscillation frequency, despite the global diffusional coupling of the surface reaction, altogether creating a structure library. This unique reaction behavior is attributed to the ability of stepped surfaces of high-Miller-index domains to facilita...
The catalytic oxidation of hydrogen on Rh tips has been investigated using field ion microscopy (FIM...
The bistable NH3 + O2 reaction over a Rh(110) surface was explored in the pressure range 10−6 -10−3 ...
In heterogeneous catalysis research, the reactivity of individual nanofacets of single particles is ...
It is well documented that different surface structures of catalytically active metals may exhibit d...
Catalytic hydrogen oxidation on a polycrystalline rhodium foil used as a surface structure library i...
Catalytic hydrogen oxidation on a polycrystalline rhodium foil used as a surface structure library i...
Spatio-temporal nonuniformities in H2 oxidation on individual Rh(h k l) domains of a polycrystalline...
Partial oxidations of small molecules over metal surfaces are central to many heterogeneously cataly...
81% of all rhodium (Rh) is used in automobile catalytic converters. Consequently, researchers have d...
Catalytic reactions may exhibit oscillations in the reaction rate even at constant external paramete...
Curved crystals are a simple but powerful approach to bridge the gap between single crystal surfaces...
The reaction of hydrogen/oxygen gas mixtures with rhodium single crystals was studied using video-FI...
The reconstruction of rhodium and platinum crystals of some tens of nanometres diameter was investig...
A catalyst is a substance that can speed up the rate of a chemical reaction without itself being con...
Curved crystals are a simple but powerful approach to bridge the gap between single crystal surfaces...
The catalytic oxidation of hydrogen on Rh tips has been investigated using field ion microscopy (FIM...
The bistable NH3 + O2 reaction over a Rh(110) surface was explored in the pressure range 10−6 -10−3 ...
In heterogeneous catalysis research, the reactivity of individual nanofacets of single particles is ...
It is well documented that different surface structures of catalytically active metals may exhibit d...
Catalytic hydrogen oxidation on a polycrystalline rhodium foil used as a surface structure library i...
Catalytic hydrogen oxidation on a polycrystalline rhodium foil used as a surface structure library i...
Spatio-temporal nonuniformities in H2 oxidation on individual Rh(h k l) domains of a polycrystalline...
Partial oxidations of small molecules over metal surfaces are central to many heterogeneously cataly...
81% of all rhodium (Rh) is used in automobile catalytic converters. Consequently, researchers have d...
Catalytic reactions may exhibit oscillations in the reaction rate even at constant external paramete...
Curved crystals are a simple but powerful approach to bridge the gap between single crystal surfaces...
The reaction of hydrogen/oxygen gas mixtures with rhodium single crystals was studied using video-FI...
The reconstruction of rhodium and platinum crystals of some tens of nanometres diameter was investig...
A catalyst is a substance that can speed up the rate of a chemical reaction without itself being con...
Curved crystals are a simple but powerful approach to bridge the gap between single crystal surfaces...
The catalytic oxidation of hydrogen on Rh tips has been investigated using field ion microscopy (FIM...
The bistable NH3 + O2 reaction over a Rh(110) surface was explored in the pressure range 10−6 -10−3 ...
In heterogeneous catalysis research, the reactivity of individual nanofacets of single particles is ...