AbstractThe locally-resolved reaction kinetics of CO oxidation on individual (100)-type grains of a polycrystalline Pt foil was monitored in situ using photoemission electron microscopy (PEEM). Reaction-induced surface morphology changes were studied by optical differential interference contrast microscopy and atomic force microscopy (AFM). Regions of high catalytic activity, low activity and bistability in a (p,T)-parameter space were determined, allowing to establish a local kinetic phase diagram for CO oxidation on (100) facets of Pt foil. PEEM observations of the reaction front propagation on Pt(100) domains reveal a high degree of propagation anisotropy both for oxygen and CO fronts on the apparently isotropic Pt(100) surface. The anis...
The influence of the catalytic oxidation of CO on structural changes of a Pt catalyst was studied wi...
CO oxidation on platinum has become a model reaction in surface science due to its simple reaction m...
AbstractIn the present contribution we present an overview of our recent studies using the “kinetics...
The locally-resolved reaction kinetics of CO oxidation on individual (100)-type grains of a polycrys...
AbstractThe locally-resolved reaction kinetics of CO oxidation on individual (100)-type grains of a ...
The reaction kinetics of catalytic CO oxidation on individual grains of a polycrystalline Pt foil ha...
The catalytic oxidation of CO on Pt{100} has been studied in situ using photoemission electron micro...
The locally resolved kinetics of CO oxidation on individual (111), (110) and (100) domains of a poly...
The formation of spatiotemporal patterns during catalytic CO oxidation on a Pt(210) surface was foll...
The role of artificially created defects and steps in the local reaction kinetics of CO oxidation on...
Reaction-diffusion fronts which occur during the oxidation of adsorbed CO on Pt{100} have been studi...
Shedding light on light-off: Photoemission electron microscopy, DFT, and microkinetic modeling were ...
Spatial coupling during catalytic ignition of CO oxidation on μm-sized Pt(hkl) domains of a polycrys...
AbstractSpatial coupling during catalytic ignition of CO oxidation on μm-sized Pt(hkl) domains of a ...
The individual grains of a polycrystalline platinum surface as well as the spatio-temporal concentra...
The influence of the catalytic oxidation of CO on structural changes of a Pt catalyst was studied wi...
CO oxidation on platinum has become a model reaction in surface science due to its simple reaction m...
AbstractIn the present contribution we present an overview of our recent studies using the “kinetics...
The locally-resolved reaction kinetics of CO oxidation on individual (100)-type grains of a polycrys...
AbstractThe locally-resolved reaction kinetics of CO oxidation on individual (100)-type grains of a ...
The reaction kinetics of catalytic CO oxidation on individual grains of a polycrystalline Pt foil ha...
The catalytic oxidation of CO on Pt{100} has been studied in situ using photoemission electron micro...
The locally resolved kinetics of CO oxidation on individual (111), (110) and (100) domains of a poly...
The formation of spatiotemporal patterns during catalytic CO oxidation on a Pt(210) surface was foll...
The role of artificially created defects and steps in the local reaction kinetics of CO oxidation on...
Reaction-diffusion fronts which occur during the oxidation of adsorbed CO on Pt{100} have been studi...
Shedding light on light-off: Photoemission electron microscopy, DFT, and microkinetic modeling were ...
Spatial coupling during catalytic ignition of CO oxidation on μm-sized Pt(hkl) domains of a polycrys...
AbstractSpatial coupling during catalytic ignition of CO oxidation on μm-sized Pt(hkl) domains of a ...
The individual grains of a polycrystalline platinum surface as well as the spatio-temporal concentra...
The influence of the catalytic oxidation of CO on structural changes of a Pt catalyst was studied wi...
CO oxidation on platinum has become a model reaction in surface science due to its simple reaction m...
AbstractIn the present contribution we present an overview of our recent studies using the “kinetics...