The catalytic oxidation of methane to carbon dioxide and water over PdO(101) is investigated with first-principles based microkinetic modeling. Extensive exploration of the reaction landscape allows for determination of preferred pathways at different reaction conditions. The predicted kinetic behavior is in good agreement with a range of experimental findings including reaction orders in methane, water, and oxygen as well as apparent activation energies. The results consolidate the role of the PdO(101) surface in the activity of PdO catalysts and offer starting points for computational design of materials with improved catalytic activity. Moreover, the study demonstrates the predictive power of first-principles based kinetic modeling for o...
AbstractCatalytic oxidations of methane over palladium-based nanoparticles, with and without oxygen ...
Accomplishing a first-principles modeling of heterogeneous catalysis that allows for a quantitative ...
The water inhibition of methane oxidation over a bimetallic Pt-Pd on CeO2-Al2O3 catalyst was investi...
The catalytic oxidation of methane to carbon dioxide and water over PdO(101) is investigated with fi...
The intrinsic activity of Pd(100) and Pd(111) for methane oxidation is investigated by Density Funct...
Understanding how catalysts work down to the atomic level can provide ways to improve chemical proce...
A comprehensive model is developed for complete methane oxidation over supported palladium. The mode...
Methane dissociation and subsequent formation of water and carbon-dioxide over Pd and Pt are investi...
A theoretical analysis was carried out on the mechanism of methane oxidation to methanol occurring o...
The catalytic oxidation activity of platinum particles in automobile catalysts is thought to origina...
Density functional theory and microkinetic modeling are employed to investigate CH<sub>4</sub> oxida...
The active phase of Pd during methane oxidation is a long- standing puzzle, which, if solved, could ...
In this work, a theoretical analysis was carried out on the mechanism of methane combustion occurrin...
Heterogeneous catalysis is vitally important to modern society, and one path towardsrational catalys...
The overall goal of this work is to utilize multi scale modeling techniques as well as various exper...
AbstractCatalytic oxidations of methane over palladium-based nanoparticles, with and without oxygen ...
Accomplishing a first-principles modeling of heterogeneous catalysis that allows for a quantitative ...
The water inhibition of methane oxidation over a bimetallic Pt-Pd on CeO2-Al2O3 catalyst was investi...
The catalytic oxidation of methane to carbon dioxide and water over PdO(101) is investigated with fi...
The intrinsic activity of Pd(100) and Pd(111) for methane oxidation is investigated by Density Funct...
Understanding how catalysts work down to the atomic level can provide ways to improve chemical proce...
A comprehensive model is developed for complete methane oxidation over supported palladium. The mode...
Methane dissociation and subsequent formation of water and carbon-dioxide over Pd and Pt are investi...
A theoretical analysis was carried out on the mechanism of methane oxidation to methanol occurring o...
The catalytic oxidation activity of platinum particles in automobile catalysts is thought to origina...
Density functional theory and microkinetic modeling are employed to investigate CH<sub>4</sub> oxida...
The active phase of Pd during methane oxidation is a long- standing puzzle, which, if solved, could ...
In this work, a theoretical analysis was carried out on the mechanism of methane combustion occurrin...
Heterogeneous catalysis is vitally important to modern society, and one path towardsrational catalys...
The overall goal of this work is to utilize multi scale modeling techniques as well as various exper...
AbstractCatalytic oxidations of methane over palladium-based nanoparticles, with and without oxygen ...
Accomplishing a first-principles modeling of heterogeneous catalysis that allows for a quantitative ...
The water inhibition of methane oxidation over a bimetallic Pt-Pd on CeO2-Al2O3 catalyst was investi...