The active phase of Pd during methane oxidation is a long- standing puzzle, which, if solved, could provide routes for design of improved catalysts. Here, density functional theory and in situ surface X-ray diffraction are used to identify and characterize atomic sites yielding high methane conversion. Calculations are performed for methane dissociation over a range of Pd and PdOx surfaces and reveal facile dissociation on either under-coordinated Pd sites in PdO(101) or metallic surfaces. The experiments show unambiguously that high methane conversion requires sufficiently thick PdO(101) films or metallic Pd, in full agreement with the calculations. The established link between high activity and atomic structure enables rational design of ...
Density functional theory and microkinetic modeling are employed to investigate CH<sub>4</sub> oxida...
In this work, a theoretical analysis was carried out on the mechanism of methane combustion occurrin...
AbstractCatalytic oxidations of methane over palladium-based nanoparticles, with and without oxygen ...
The active phase of Pd during methane oxidation is a long-standing puzzle, which, if solved, could p...
The active phase of Pd during methane oxidation is a long-standing puzzle, which, if solved, could p...
Experimental and theoretical studies have lately revealed that under-coordinated Pd-sites in the PdO...
Understanding how catalysts work down to the atomic level can provide ways to improve chemical proce...
High-pressure X-ray photoelectron spectroscopy, mass spectrometry, and density functional theory cal...
Pd-based catalysts are widely used in the oxidation of CH4 and have a significant impact on global w...
The dissociative adsorption of methane on variously oxidized Pd, Pt, and Pd-Pt surfaces is investiga...
The dissociative adsorption of methane on variously oxidized Pd, Pt, and Pd-Pt surfaces is investiga...
Methane dissociation and subsequent formation of water and carbon-dioxide over Pd and Pt are investi...
The intrinsic activity of Pd(100) and Pd(111) for methane oxidation is investigated by Density Funct...
Methane in the form of natural gas is increasingly used as a transportation fuel, but the treatment ...
1443-1447The mechanisms for catalytic oxidation of methane via transition metals Pd, Pt and Ag in ga...
Density functional theory and microkinetic modeling are employed to investigate CH<sub>4</sub> oxida...
In this work, a theoretical analysis was carried out on the mechanism of methane combustion occurrin...
AbstractCatalytic oxidations of methane over palladium-based nanoparticles, with and without oxygen ...
The active phase of Pd during methane oxidation is a long-standing puzzle, which, if solved, could p...
The active phase of Pd during methane oxidation is a long-standing puzzle, which, if solved, could p...
Experimental and theoretical studies have lately revealed that under-coordinated Pd-sites in the PdO...
Understanding how catalysts work down to the atomic level can provide ways to improve chemical proce...
High-pressure X-ray photoelectron spectroscopy, mass spectrometry, and density functional theory cal...
Pd-based catalysts are widely used in the oxidation of CH4 and have a significant impact on global w...
The dissociative adsorption of methane on variously oxidized Pd, Pt, and Pd-Pt surfaces is investiga...
The dissociative adsorption of methane on variously oxidized Pd, Pt, and Pd-Pt surfaces is investiga...
Methane dissociation and subsequent formation of water and carbon-dioxide over Pd and Pt are investi...
The intrinsic activity of Pd(100) and Pd(111) for methane oxidation is investigated by Density Funct...
Methane in the form of natural gas is increasingly used as a transportation fuel, but the treatment ...
1443-1447The mechanisms for catalytic oxidation of methane via transition metals Pd, Pt and Ag in ga...
Density functional theory and microkinetic modeling are employed to investigate CH<sub>4</sub> oxida...
In this work, a theoretical analysis was carried out on the mechanism of methane combustion occurrin...
AbstractCatalytic oxidations of methane over palladium-based nanoparticles, with and without oxygen ...