The hydrogenation of nitrogen (N(ads)+H(ads)-->NH(ads)) on metal surfaces is an important step in ammonia catalysis. We investigate the reaction dynamics of this hydrogenation step by time independent scattering theory and variational transition state theory (VTST) including tunneling corrections. The potential energy surface is derived by hybrid density functional theory on a model cluster composed of 12 ruthenium atoms resembling a Ru(0001) surface. The scattering calculations are performed on a reduced dimensionality potential energy hypersurface, where two dimensions are treated explicitly and all others are included implicitly by the zero-point correction. The VTST calculations include quantum effects along the reaction coordinate by a...
Quantum chemical calculations have been used to investigate the rate constant and mechanism of ammon...
Ammonia is one of the most produced chemicals in the world. Its industrial production emerged in the...
Recent theoretical progress in gas-surface reaction dynamics, a field relevant to heterogeneous cata...
The hydrogenation of nitrogen (N(ads)+H(ads)-->NH(ads)) on metal surfaces is an important step in...
The hydrogenation reactions of nitrogen (NH n, (ads) + H ...
The title reaction is an important step in the synthesis of ammonia over ruthenium-based catalysts, ...
Thermodesorption rates for the desorption of ammonia from Ru(0 0 0 1) are calculated by Transition S...
Hellman A, Baerends EJ, Biczysko M, et al. Predicting catalysis: Understanding ammonia synthesis fro...
Here, we give a full account of a large collaborative effort toward an atomic-scale understanding of...
The kinetics of NH and ND formation and dissociation reactions on Ru(001) were studied using time-de...
A first-principles microkinetic model has been developed and applied to ethylene hydrogenation over ...
We investigated the NH3 catalytic decomposition on Ru and Ir metal surfaces using density functional...
The Haber-Bosch industrial process for synthesis of ammonia (NH_3) from hydrogen and nitrogen produc...
van Harrevelt R, Honkala K, Norskov JK, Manthe U. The reaction rate for dissociative adsorption of N...
Understanding the relative stability of CHx species on surfaces is necessary for mechanistic descrip...
Quantum chemical calculations have been used to investigate the rate constant and mechanism of ammon...
Ammonia is one of the most produced chemicals in the world. Its industrial production emerged in the...
Recent theoretical progress in gas-surface reaction dynamics, a field relevant to heterogeneous cata...
The hydrogenation of nitrogen (N(ads)+H(ads)-->NH(ads)) on metal surfaces is an important step in...
The hydrogenation reactions of nitrogen (NH n, (ads) + H ...
The title reaction is an important step in the synthesis of ammonia over ruthenium-based catalysts, ...
Thermodesorption rates for the desorption of ammonia from Ru(0 0 0 1) are calculated by Transition S...
Hellman A, Baerends EJ, Biczysko M, et al. Predicting catalysis: Understanding ammonia synthesis fro...
Here, we give a full account of a large collaborative effort toward an atomic-scale understanding of...
The kinetics of NH and ND formation and dissociation reactions on Ru(001) were studied using time-de...
A first-principles microkinetic model has been developed and applied to ethylene hydrogenation over ...
We investigated the NH3 catalytic decomposition on Ru and Ir metal surfaces using density functional...
The Haber-Bosch industrial process for synthesis of ammonia (NH_3) from hydrogen and nitrogen produc...
van Harrevelt R, Honkala K, Norskov JK, Manthe U. The reaction rate for dissociative adsorption of N...
Understanding the relative stability of CHx species on surfaces is necessary for mechanistic descrip...
Quantum chemical calculations have been used to investigate the rate constant and mechanism of ammon...
Ammonia is one of the most produced chemicals in the world. Its industrial production emerged in the...
Recent theoretical progress in gas-surface reaction dynamics, a field relevant to heterogeneous cata...