We present a combined experimental and theoretical study of the self-diffusion of ammonia on exfoliated graphite. Using neutron time-of- flight spectroscopy we are able to resolve the ultrafast diffusion process of adsorbed ammonia, NH3, on graphite. Together with van der Waals corrected density functional theory calculations we show that the diffusion of NH3 follows a hopping motion on a weakly corrugated potential energy surface with an activation energy of about 4 meV which is particularly low for this type of diffusive motion. The hopping motion includes further a significant number of long jumps and the diffusion constant of ammonia adsorbed on graphite is determined with D = 3.9.10-8 m2/s at 94K
Correlated, counterpoise corrected wave function calculations on the hydrogen-coronene system are us...
http://link.aip.org/link/?APCPCS/708/233/1The intramolecular diffusive motions associated with the c...
Grand canonical Monte Carlo simulation is used to study the adsorption of nitrogen at 77 K and ammon...
6 págs.; 3 figs.; 2 tabs.This work presents an experimental picture of molecular ballistic diffusion...
This thesis presents my PhD work about molecular diffusion on surfaces of carbon materials. The main...
This work presents an experimental picture of molecular ballistic diffusion on a surface, a process ...
Diffusion on surfaces is an extremely wide subject of paramount importance for fundamental research ...
The diffusive rotational and translational mobility of a simple rod-like molecule, i.e. ethane (C2H6...
We review recent experimental investigations of the interaction of gases with the surface of single-...
International audienceQuasielastic neutron scattering (QENS) measurements together with equilibrium ...
Contains fulltext : 32530.pdf (publisher's version ) (Open Access)A theoretical st...
Mössbauer measurements of Sn-119 in Sn(CH3)4 molecules adsorbed on graphite yields an estimate of th...
Cette thèse de doctorat porte sur ma recherche doctorale sur la diffusion moléculaire sur des surfac...
We present a Monte Carlo simulation and experimental study of ammonia adsorption on graphitized ther...
Diffusion across surfaces generally involves motion on a vibrating but otherwise stationary substrat...
Correlated, counterpoise corrected wave function calculations on the hydrogen-coronene system are us...
http://link.aip.org/link/?APCPCS/708/233/1The intramolecular diffusive motions associated with the c...
Grand canonical Monte Carlo simulation is used to study the adsorption of nitrogen at 77 K and ammon...
6 págs.; 3 figs.; 2 tabs.This work presents an experimental picture of molecular ballistic diffusion...
This thesis presents my PhD work about molecular diffusion on surfaces of carbon materials. The main...
This work presents an experimental picture of molecular ballistic diffusion on a surface, a process ...
Diffusion on surfaces is an extremely wide subject of paramount importance for fundamental research ...
The diffusive rotational and translational mobility of a simple rod-like molecule, i.e. ethane (C2H6...
We review recent experimental investigations of the interaction of gases with the surface of single-...
International audienceQuasielastic neutron scattering (QENS) measurements together with equilibrium ...
Contains fulltext : 32530.pdf (publisher's version ) (Open Access)A theoretical st...
Mössbauer measurements of Sn-119 in Sn(CH3)4 molecules adsorbed on graphite yields an estimate of th...
Cette thèse de doctorat porte sur ma recherche doctorale sur la diffusion moléculaire sur des surfac...
We present a Monte Carlo simulation and experimental study of ammonia adsorption on graphitized ther...
Diffusion across surfaces generally involves motion on a vibrating but otherwise stationary substrat...
Correlated, counterpoise corrected wave function calculations on the hydrogen-coronene system are us...
http://link.aip.org/link/?APCPCS/708/233/1The intramolecular diffusive motions associated with the c...
Grand canonical Monte Carlo simulation is used to study the adsorption of nitrogen at 77 K and ammon...