Chemisorption of hydrogen on metallic particles is often used to estimate the metal dispersion (D), the metal particle size (d), and the metallic specific surface area (SM), currently assuming a stoichiometry of one hydrogen atom H adsorbed per surface metal atom M. This assumption leads to a large error when estimating D, d, and SM, and a rigorous method is needed to tackle this problem. A model describing the statistics of the metal surface atom and site distribution on perfect cuboctahedron clusters, already developed for Pt, is applied to Pd, Ir, and Rh, using the density functional theory (DFT) calculation of the literature to determine the most favorable adsorption sites for each metal. The model predicts the H/M values for each metal...
Catalytic reactions perform best if the interaction between the adsorbates and the surface is not to...
Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters....
We determined the binding energy of hydrogen to the closest packed surface for all nine group VIII t...
International audienceChemisorption of hydrogen on metallic particles is often used to estimate the ...
International audienceChemisorption of probe molecules such as hydrogen and carbon monoxide on the s...
Hydrogen chemisorption measurements of highly dispersed Pt, Rh, and Ir catalysts yielded H/M values ...
Hydrogen chemisorption measurements of highly dispersed Pt, Rh, and Ir catalysts yielded H/M values ...
Hydrogen-to-metal (H/M) ratios exceeding unity for Pt and Rh and exceeding 2 for Ir were measured fo...
In this review, we present our recent first principles studies on the sequential H-2 dissociative ch...
The adsorption of H2 on a series of gas-phase transition metal (scandium, vanadium, iron, cobalt, an...
International audienceWe report a density-functional study of some properties of the dissociative in...
We present a simple and efficient model for predicting the adsorption of molecules on metal surfaces...
The interaction between hydrogen and a transition metal surface is an important aspect of many chemi...
The adsorption of H-2 on a series of gas-phase transition metal (scandium, vanadium, iron, cobalt, a...
Catalytic reactions perform best if the interaction between the adsorbates and the surface is not to...
Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters....
We determined the binding energy of hydrogen to the closest packed surface for all nine group VIII t...
International audienceChemisorption of hydrogen on metallic particles is often used to estimate the ...
International audienceChemisorption of probe molecules such as hydrogen and carbon monoxide on the s...
Hydrogen chemisorption measurements of highly dispersed Pt, Rh, and Ir catalysts yielded H/M values ...
Hydrogen chemisorption measurements of highly dispersed Pt, Rh, and Ir catalysts yielded H/M values ...
Hydrogen-to-metal (H/M) ratios exceeding unity for Pt and Rh and exceeding 2 for Ir were measured fo...
In this review, we present our recent first principles studies on the sequential H-2 dissociative ch...
The adsorption of H2 on a series of gas-phase transition metal (scandium, vanadium, iron, cobalt, an...
International audienceWe report a density-functional study of some properties of the dissociative in...
We present a simple and efficient model for predicting the adsorption of molecules on metal surfaces...
The interaction between hydrogen and a transition metal surface is an important aspect of many chemi...
The adsorption of H-2 on a series of gas-phase transition metal (scandium, vanadium, iron, cobalt, a...
Catalytic reactions perform best if the interaction between the adsorbates and the surface is not to...
Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters....
We determined the binding energy of hydrogen to the closest packed surface for all nine group VIII t...