The kinetics of the reaction between gas-phase ethylene and adsorbed acetate species to form vinyl acetate monomer (VAM) on a Pd(111) surface are measured using infrared spectroscopy to monitor the rate of acetate removal, as well as the rates of VAM and ethylidyne formation, at various temperatures. The results are fit using a kinetic model first proposed by Samanos in which ethylene reacts with acetate species to form an acetoxyethyl intermediate that forms VAM via β-hydride elimination. The results of the kinetic model agree well with the experimental data and Arrhenius plots of the rate constants yield activation energies that are in good agreement with those predicted by density functional theory (DFT) calculations. DFT also predicts t...
DFT-GGA periodic slab calculations are used to examine ethylene dehydrogenation paths over Pd(111). ...
none4noFirst-principles calculations support the hypothesis that the appropriate spacing between Pd ...
The accurate description of chemical reaction rates at surfaces is essential for the understanding ...
The kinetics of the reaction between gas-phase ethylene and adsorbed acetate species to form vinyl a...
The high adsorbate coverages that form on the surfaces of many heterogeneous catalysts under steady-...
The specific goal of this work was to understanding the catalytic reactions pathways for the synthes...
Recent density functional theory (DFT) calculations of the activation energy for the conversion of e...
Acetoxylation of ethylene over supported palladium and palladium/gold is a well established commerci...
A kinetic study of vinyl acetate (VA) synthesis over a Pd(100) catalyst is described, and the effect...
A kinetic study of the oxidation of ethylene to vinyl acetate using a palladium complex catalyst is ...
Vinyl acetate can be formed in the homogeneous reaction of ethylene with palladium acetate in glacia...
We have studied the various aspects of the homogeneous acetoxylation of ethylene to vinyl acetate by...
The adsorption, reaction and decomposition of a series of molecules (oxygen, ethene, acetic acid, ca...
DFT-GGA periodic slab calculations are used to examine ethylene dehydrogenation paths over Pd(111). ...
none4noFirst-principles calculations support the hypothesis that the appropriate spacing between Pd ...
The accurate description of chemical reaction rates at surfaces is essential for the understanding ...
The kinetics of the reaction between gas-phase ethylene and adsorbed acetate species to form vinyl a...
The high adsorbate coverages that form on the surfaces of many heterogeneous catalysts under steady-...
The specific goal of this work was to understanding the catalytic reactions pathways for the synthes...
Recent density functional theory (DFT) calculations of the activation energy for the conversion of e...
Acetoxylation of ethylene over supported palladium and palladium/gold is a well established commerci...
A kinetic study of vinyl acetate (VA) synthesis over a Pd(100) catalyst is described, and the effect...
A kinetic study of the oxidation of ethylene to vinyl acetate using a palladium complex catalyst is ...
Vinyl acetate can be formed in the homogeneous reaction of ethylene with palladium acetate in glacia...
We have studied the various aspects of the homogeneous acetoxylation of ethylene to vinyl acetate by...
The adsorption, reaction and decomposition of a series of molecules (oxygen, ethene, acetic acid, ca...
DFT-GGA periodic slab calculations are used to examine ethylene dehydrogenation paths over Pd(111). ...
none4noFirst-principles calculations support the hypothesis that the appropriate spacing between Pd ...
The accurate description of chemical reaction rates at surfaces is essential for the understanding ...