A macroscopic model to describe the spatio-temporal patterns observed in the CO + O2 reaction on Pt(110) is presented. We consider mass transport in the adsorbed layer as a response to the gradient in chemical potential of adsorbed CO and explicitly take into account the coupling between diffusion and the adsorbate-induced structural transformation of the substrate. Numerical integration of the model equations in two-dimensions revealed target patterns, spiral waves as well as subharmonic standing-wave patterns that closely resemble those observed in experiments. Our results also show that synchronization of the surface can be achieved through nucleation and growth processes even in the absence of gas-phase coupling.SCOPUS: cp.jSCOPUS: ar.j...
The exploration of pattern formation by reaction-diffusion systems in complex bounded domains has be...
Theoretical studies have thus far been unable to model pattern formation during the reaction in this...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
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...
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...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
A dynamic model designed to describe bistability and kinetic oscillations of the reaction rate durin...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
In CO oxidation on platinum single-crystal surfaces spatial coupling takes place via two basic mecha...
The spatiotemporal pattern formation is studied in the catalytic carbon monoxide oxidation reaction ...
A set of coupled nonlinear reaction-diffusion equations was formulated for the oxidation of CO on lo...
The exploration of pattern formation by reaction-diffusion systems in complex bounded domains has be...
The exploration of pattern formation by reaction-diffusion systems in complex bounded domains has be...
The exploration of pattern formation by reaction-diffusion systems in complex bounded domains has be...
Theoretical studies have thus far been unable to model pattern formation during the reaction in this...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
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...
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...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
A dynamic model designed to describe bistability and kinetic oscillations of the reaction rate durin...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
In CO oxidation on platinum single-crystal surfaces spatial coupling takes place via two basic mecha...
The spatiotemporal pattern formation is studied in the catalytic carbon monoxide oxidation reaction ...
A set of coupled nonlinear reaction-diffusion equations was formulated for the oxidation of CO on lo...
The exploration of pattern formation by reaction-diffusion systems in complex bounded domains has be...
The exploration of pattern formation by reaction-diffusion systems in complex bounded domains has be...
The exploration of pattern formation by reaction-diffusion systems in complex bounded domains has be...
Theoretical studies have thus far been unable to model pattern formation during the reaction in this...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...