Ruthenium(IV)oxide (RuO2) is a material used for various purposes. It acts as a catalytic agent in several reactions, for example oxidation of carbon monoxide. Furthermore, it is used as gate material in gas sensors. In this work theoretical and computational studies were made on adsorbed molecules on RuO2 (110) surface, in order to follow the chemistry on the molecular level. Density functional theory calculations of the reactions on the surface have been performed. The calculated reaction and activation energies have been used as input for thermodynamic and kinetics calculations. A surface phase diagram was calculated, presenting the equilibrium composition of the surface at different temperature and gas compositions. The kinetics results...
The interaction of hydrogen with RuO2(110) surfaces was studied by means of thermal desorption and v...
We have used a combination of density functional theory (OFT) and kinetic Monte Carlo (KMC) simulati...
We report results of density functional theory calculations of the interaction of NO with the stoich...
Ruthenium(IV)oxide (RuO2) is a material used for various purposes. It acts as a catalytic agent in s...
Using a variety of dedicated surface sensitive techniques, we studied the interaction of hydrogen wi...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (Oâ) and by co...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (O-beta) and b...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (O-beta) and b...
The structural, electronic and mechanical properties of crystalline ruthenium dioxide RuO2 in its ru...
ABSTRACT: The theoretical study of catalysis would sub-stantialy benefit from the use of atomistic s...
The structure of RuO2(110) and the mechanism for catalytic carbon monoxide oxidation on this surface...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
Over the past few years, RuO2 has developed into one of the best-characterized late transition metal...
RuO2 is a conducting transition metal oxide that has unique redox properties to be used as heterogen...
The interaction of hydrogen with RuO2(110) surfaces was studied by means of thermal desorption and v...
We have used a combination of density functional theory (OFT) and kinetic Monte Carlo (KMC) simulati...
We report results of density functional theory calculations of the interaction of NO with the stoich...
Ruthenium(IV)oxide (RuO2) is a material used for various purposes. It acts as a catalytic agent in s...
Using a variety of dedicated surface sensitive techniques, we studied the interaction of hydrogen wi...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (Oâ) and by co...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (O-beta) and b...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (O-beta) and b...
The structural, electronic and mechanical properties of crystalline ruthenium dioxide RuO2 in its ru...
ABSTRACT: The theoretical study of catalysis would sub-stantialy benefit from the use of atomistic s...
The structure of RuO2(110) and the mechanism for catalytic carbon monoxide oxidation on this surface...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
Over the past few years, RuO2 has developed into one of the best-characterized late transition metal...
RuO2 is a conducting transition metal oxide that has unique redox properties to be used as heterogen...
The interaction of hydrogen with RuO2(110) surfaces was studied by means of thermal desorption and v...
We have used a combination of density functional theory (OFT) and kinetic Monte Carlo (KMC) simulati...
We report results of density functional theory calculations of the interaction of NO with the stoich...