The reaction between NO and hydrogen on Pt{100} has been studied during transient changes of the partial pressure ratio of the reactants at constant substrate temperature using low-energy electron microscopy (LEEM), mirror electron microscopy (MEM) and selected-area low-energy electron diffraction (LEED). Surface steps and other mesoscopic defects are found to influence the nucleation and propagation of the reaction–diffusion fronts (RDFs) which develop when the NO/H2 partial pressure ratio is decreased. In particular, LEEM and MEM show that RDF propagation is hindered by surface steps which cause a laterally anisotropic and jump-like (‘stop-and-go’) propagation. The surface crystallography, on the other hand, has no influence on the RDF pr...
In situ surface X-ray diffraction and transmission electron microscopy at 1 bar show massive materia...
The NO + H2 reaction on Rh(110) has been investigated between 480 and 650 K under isothermal low-pre...
This contribution reviews some of the recent progress made in local probing of catalytic surface rea...
Using the technique of photoemission electron microscopy (PEEM) we have examined the reaction betwee...
The interaction of hydrogen with NOads/1 X 1 islands produced by NO adsorption on the reconstructed ...
The interaction of hydrogen with NO ads /1 × 1 islands produced by NO adsorption on the reconstructe...
The catalytic reduction of NO by H2 on Pt(100) exhibits sustained kinetic oscillations at low feed-g...
The surface structure dependence of the NO dissociation on Pt has been investigated using field elec...
We have studied the catalytic reduction of NO2 with hydrogen on Pt tips by means field ion microscop...
We have studied the catalytic reduction of nitric oxide (NO) with hydrogen (H2) on platinum using bo...
The adsorption of NO and its reaction with H2 over Pd tips were investigated by means of field ion m...
During the catalyzed oxidation of hydrogen on a Pt(111) surface, reaction fronts develop below the d...
Since the introduction of the catalytic converter in vehicles noble metals (Rh, Pt, Pd) have been us...
We present dynamic studies of surface reactions using video-Field Ion Microscopy (FIM) along with Pu...
Under continuous flow conditions the oscillatory NO + CO reaction on Pt(100) exhibits bistability in...
In situ surface X-ray diffraction and transmission electron microscopy at 1 bar show massive materia...
The NO + H2 reaction on Rh(110) has been investigated between 480 and 650 K under isothermal low-pre...
This contribution reviews some of the recent progress made in local probing of catalytic surface rea...
Using the technique of photoemission electron microscopy (PEEM) we have examined the reaction betwee...
The interaction of hydrogen with NOads/1 X 1 islands produced by NO adsorption on the reconstructed ...
The interaction of hydrogen with NO ads /1 × 1 islands produced by NO adsorption on the reconstructe...
The catalytic reduction of NO by H2 on Pt(100) exhibits sustained kinetic oscillations at low feed-g...
The surface structure dependence of the NO dissociation on Pt has been investigated using field elec...
We have studied the catalytic reduction of NO2 with hydrogen on Pt tips by means field ion microscop...
We have studied the catalytic reduction of nitric oxide (NO) with hydrogen (H2) on platinum using bo...
The adsorption of NO and its reaction with H2 over Pd tips were investigated by means of field ion m...
During the catalyzed oxidation of hydrogen on a Pt(111) surface, reaction fronts develop below the d...
Since the introduction of the catalytic converter in vehicles noble metals (Rh, Pt, Pd) have been us...
We present dynamic studies of surface reactions using video-Field Ion Microscopy (FIM) along with Pu...
Under continuous flow conditions the oscillatory NO + CO reaction on Pt(100) exhibits bistability in...
In situ surface X-ray diffraction and transmission electron microscopy at 1 bar show massive materia...
The NO + H2 reaction on Rh(110) has been investigated between 480 and 650 K under isothermal low-pre...
This contribution reviews some of the recent progress made in local probing of catalytic surface rea...