We discuss an alternative to the traditional gas-phase coupling approach in order to explain synchronized global oscillations in CO oxidation on Pt(110). We use a microscopic model which includes structural Pt surface reconstruction via front propagation, and large diffusion rates for CO. The synchronization mechanism is associated with the formation of a Turing-like structure of the substrate. By using large parallel microscopic simulations we derive scaling laws which allow us to extrapolate to realistic diffusion rates, pattern size, and oscillation periods
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
A Monte Carlo simulation of the formation of regular facet patterns during catalytic CO oxidation on...
We discuss an alternative to the traditional gas-phase coupling approach in order to explain synchro...
We discuss an alternative to the traditional gas-phase coupling approach in order to explain synchro...
We discuss an alternative to the traditional gas-phase coupling approach in order to explain synchro...
We discuss an alternative to the traditional gas-phase coupling approach in order to explain synchro...
A reaction-diffusion model for CO oxidation on Pt(110) single crystals proposed by Krischer, Eiswirt...
A macroscopic model to describe the spatio-temporal patterns observed in the CO + O2 reaction on Pt(...
Theoretical studies have thus far been unable to model pattern formation during the reaction in this...
Theoretical studies have thus far been unable to model pattern formation during the reaction in this...
The Pt(110) surface facets during the catalytic oxidation of CO, if reaction conditions are adjusted...
In oscillatory surface reactions on single crystal surfaces the partial pressure variations that acc...
In CO oxidation on platinum single-crystal surfaces spatial coupling takes place via two basic mecha...
By employing mirror electron microscopy (MEM) to image the Pt(110) surface during the catalytic oxid...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
A Monte Carlo simulation of the formation of regular facet patterns during catalytic CO oxidation on...
We discuss an alternative to the traditional gas-phase coupling approach in order to explain synchro...
We discuss an alternative to the traditional gas-phase coupling approach in order to explain synchro...
We discuss an alternative to the traditional gas-phase coupling approach in order to explain synchro...
We discuss an alternative to the traditional gas-phase coupling approach in order to explain synchro...
A reaction-diffusion model for CO oxidation on Pt(110) single crystals proposed by Krischer, Eiswirt...
A macroscopic model to describe the spatio-temporal patterns observed in the CO + O2 reaction on Pt(...
Theoretical studies have thus far been unable to model pattern formation during the reaction in this...
Theoretical studies have thus far been unable to model pattern formation during the reaction in this...
The Pt(110) surface facets during the catalytic oxidation of CO, if reaction conditions are adjusted...
In oscillatory surface reactions on single crystal surfaces the partial pressure variations that acc...
In CO oxidation on platinum single-crystal surfaces spatial coupling takes place via two basic mecha...
By employing mirror electron microscopy (MEM) to image the Pt(110) surface during the catalytic oxid...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
A Monte Carlo simulation of the formation of regular facet patterns during catalytic CO oxidation on...