We have performed density functional theory calculations with the generalized gradient approximation to investigate the catalytic decomposition reactions of one of the most promising monopropellants, hydroxylammonium nitrate (HAN), on two catalytically active single crystal Pd(100) and Ir(100) surfaces, aiming at exploring different reaction pathways and reactivities of these two surfaces towards the catalytic decomposition of HAN. We find that the HAN molecule binds both the Pd(100) and Ir(100) surfaces molecularly in different orientations with respect to the surface. The HONO elimination is found to possess the lowest activation energy on the Pd(100) surface; whereas, NO2 elimination is predicted to show the lowest activation energy on t...
Adsorbate geometry and reaction dynamics play essential roles in catalytic processes at surfaces. He...
By means of density functional theory calculations we have investigated the role of adsorbed atomic ...
The adsorption of ammonia on the two low index (111) and (100) surfaces of rhodium has been studied ...
We have performed density functional theory calculations with the generalized gradient approximation...
Periodic DFT calculations using plane waves have been applied to comparatively study the adsorption ...
Using the plane-wave pseudopotential method within the density-functional theory with the generalize...
The mechanisms of hydrazine decompositions on Ir(1 1 1) have been investigated by using slab model b...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Catalytic decomposition of ammonia (NH<sub>3</sub>) is a promising chemical reaction in energy and e...
The adsorption of NHx fragments and oxidation of them by O and OH on the Rh(111) crystal surface hav...
Adsorbate geometry and reaction dynamics play essential roles in catalytic processes at surfaces. He...
International audienceConsidering the crucial role of the $\gamma $-alumina solid phase in heterogen...
Adsorbate geometry and reaction dynamics play essential roles in catalytic processes at surfaces. He...
By means of density functional theory calculations we have investigated the role of adsorbed atomic ...
The adsorption of ammonia on the two low index (111) and (100) surfaces of rhodium has been studied ...
We have performed density functional theory calculations with the generalized gradient approximation...
Periodic DFT calculations using plane waves have been applied to comparatively study the adsorption ...
Using the plane-wave pseudopotential method within the density-functional theory with the generalize...
The mechanisms of hydrazine decompositions on Ir(1 1 1) have been investigated by using slab model b...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Catalytic decomposition of ammonia (NH<sub>3</sub>) is a promising chemical reaction in energy and e...
The adsorption of NHx fragments and oxidation of them by O and OH on the Rh(111) crystal surface hav...
Adsorbate geometry and reaction dynamics play essential roles in catalytic processes at surfaces. He...
International audienceConsidering the crucial role of the $\gamma $-alumina solid phase in heterogen...
Adsorbate geometry and reaction dynamics play essential roles in catalytic processes at surfaces. He...
By means of density functional theory calculations we have investigated the role of adsorbed atomic ...
The adsorption of ammonia on the two low index (111) and (100) surfaces of rhodium has been studied ...