Spatiotemporal pattern formation has been investigated with low energy electron microscopy (LEEM) and mirror electron microscopy (MEM) during the catalytic oxidation of CO on Pt{110} under both oscillatory and stationary conditions. Due to higher resolution and richer contrast than in previous PEEM studies, it has been possible to investigate the details of the nucleation and propagation of reaction–diffusion fronts which make up the patterns, Further, new and more complex patterns have been discovered which demonstrate the importance of both global coupling and reaction-induced roughening
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...
The exploration of pattern formation by reaction-diffusion systems in complex bounded domains has be...
In dieser Arbeit wird die Musterbildung während der katalytischen CO-Oxidation auf Pt{110} mittels d...
The formation of spatial patterns during the catalytic oxidation of CO on a Pd(110) surface has been...
The formation of spatiotemporal patterns during catalytic CO oxidation on a Pt(210) surface was foll...
The formation of reaction fronts during the catalytic oxidation of CO on Pt(110) has been investigat...
Using the photoelectron emission microscope (PEEM) the spatio-temporal pattern formation during the ...
Using the photoelectron emission microscope (PEEM) the spatio-temporal pattern formation during the ...
The individual grains of a polycrystalline platinum surface as well as the spatio-temporal concentra...
Reaction-diffusion fronts which occur during the oxidation of adsorbed CO on Pt{100} have been studi...
A near ambient pressure low-energy electron microscope (NAP-LEEM) has recently been constructed, tha...
Using low-energy electron microscopy (LEEM), observations of periodic and slowly moving reaction dif...
The rates of chemical reactions may exhibit temporal oscillations, even when the reaction parameters...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
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...
The exploration of pattern formation by reaction-diffusion systems in complex bounded domains has be...
In dieser Arbeit wird die Musterbildung während der katalytischen CO-Oxidation auf Pt{110} mittels d...
The formation of spatial patterns during the catalytic oxidation of CO on a Pd(110) surface has been...
The formation of spatiotemporal patterns during catalytic CO oxidation on a Pt(210) surface was foll...
The formation of reaction fronts during the catalytic oxidation of CO on Pt(110) has been investigat...
Using the photoelectron emission microscope (PEEM) the spatio-temporal pattern formation during the ...
Using the photoelectron emission microscope (PEEM) the spatio-temporal pattern formation during the ...
The individual grains of a polycrystalline platinum surface as well as the spatio-temporal concentra...
Reaction-diffusion fronts which occur during the oxidation of adsorbed CO on Pt{100} have been studi...
A near ambient pressure low-energy electron microscope (NAP-LEEM) has recently been constructed, tha...
Using low-energy electron microscopy (LEEM), observations of periodic and slowly moving reaction dif...
The rates of chemical reactions may exhibit temporal oscillations, even when the reaction parameters...
Constantly changing irregular patterns of carbon monoxide (CO) and oxygen are seen during CO oxidati...
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...
The exploration of pattern formation by reaction-diffusion systems in complex bounded domains has be...