Shedding light on light-off: Photoemission electron microscopy, DFT, and microkinetic modeling were used to examine the local kinetics in the CO oxidation on individual grains of a polycrystalline sample. It is demonstrated that catalytic ignition (“light-off”) occurs easier on Pd(hkl) domains than on corresponding Pt(hkl) domains. The isothermal determination of kinetic transitions, commonly used in surface science, is fully consistent with the isobaric reactivity monitoring applied in technical catalysis
Spatially resolved, combined energy dispersive EXAFS (EDE) and diffuse reflectance infrared Fourier ...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
Work function changes which are combined with surface processes can be investigated and used to char...
Shedding light on light-off: Photoemission electron microscopy, DFT, and microkinetic modeling were ...
The role of artificially created defects and steps in the local reaction kinetics of CO oxidation on...
The reaction kinetics of catalytic CO oxidation on individual grains of a polycrystalline Pt foil ha...
AbstractSpatial coupling during catalytic ignition of CO oxidation on μm-sized Pt(hkl) domains of a ...
AbstractIn the present contribution we present an overview of our recent studies using the “kinetics...
AbstractThe locally-resolved reaction kinetics of CO oxidation on individual (100)-type grains of a ...
Spatial coupling during catalytic ignition of CO oxidation on μm-sized Pt(hkl) domains of a polycrys...
The locally-resolved reaction kinetics of CO oxidation on individual (100)-type grains of a polycrys...
The locally resolved kinetics of CO oxidation on individual (111), (110) and (100) domains of a poly...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
ConspectusMotivated mainly by catalysis, gas-surface interaction between single crystal surfaces and...
The catalytic oxidation of carbon monoxide (CO) on transition metals, such as platinum (Pt), is comm...
Spatially resolved, combined energy dispersive EXAFS (EDE) and diffuse reflectance infrared Fourier ...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
Work function changes which are combined with surface processes can be investigated and used to char...
Shedding light on light-off: Photoemission electron microscopy, DFT, and microkinetic modeling were ...
The role of artificially created defects and steps in the local reaction kinetics of CO oxidation on...
The reaction kinetics of catalytic CO oxidation on individual grains of a polycrystalline Pt foil ha...
AbstractSpatial coupling during catalytic ignition of CO oxidation on μm-sized Pt(hkl) domains of a ...
AbstractIn the present contribution we present an overview of our recent studies using the “kinetics...
AbstractThe locally-resolved reaction kinetics of CO oxidation on individual (100)-type grains of a ...
Spatial coupling during catalytic ignition of CO oxidation on μm-sized Pt(hkl) domains of a polycrys...
The locally-resolved reaction kinetics of CO oxidation on individual (100)-type grains of a polycrys...
The locally resolved kinetics of CO oxidation on individual (111), (110) and (100) domains of a poly...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
ConspectusMotivated mainly by catalysis, gas-surface interaction between single crystal surfaces and...
The catalytic oxidation of carbon monoxide (CO) on transition metals, such as platinum (Pt), is comm...
Spatially resolved, combined energy dispersive EXAFS (EDE) and diffuse reflectance infrared Fourier ...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
Work function changes which are combined with surface processes can be investigated and used to char...