Here we report the quasi elastic neutron scattering (QENS) study of the dynamics of 1,3-butadiene molecules adsorbed in Na–Y zeolite at saturation loading. Data analysis showed that the adsorbed 1,3-butadiene molecules undergo motion, which could be described by jump diffusion model. Within this, various plausible theoretical models have been considered to describe the experimentally observed data. Residence time and the jump length are evaluated for all the models considered. The diffusivity values obtained for the three models are found to be consistent within themselves and also while compared with those obtained for other guest molecules studied earlier
The diffusion of methanol in zeolite HY is studied using tandem quasielastic neutron scattering (QEN...
Zeolites are a class of aluminosilicate materials with many important industrial applications as cat...
The concentration dependence of the self-diffusivity of short-chain linear alkanes in the narrow win...
Study of diffusivity of acetylene adsorbed in Na-Y zeolite by quasi-elastic neutron scattering (QENS...
Quasi-elastic neutron scattering allows to characterise molecular diffusion of species adsorbed in p...
We report here the studies of the dynamics of acetylene molecules adsorbed in Na–Y zeolite cages usi...
We report results from molecular dynamics (MD) simulations and quasi-elastic neutron scattering (QEN...
We report results from molecular dynamics (MD) simulations and quasi-elastic neutron scattering (QEN...
Microporous catalysts, in particular zeolites, are among the most intensively investigated systems i...
Neutron scattering techniques can be used to study the different motions of molecules adsorbed in ze...
This study concerns the diffusion of single-component molecules in zeolites, characterised by an iso...
The dynamics of propane confined in Na-Y zeolite was studied using the quasi-elastic neutron scatter...
Quasi-Elastic Neutron Scattering (QENS) experiments were carried out to determine (a) Fick diffusivi...
Dynamics of ethylene glycol (EG) adsorbed in H-ZSM5 zeolite as studied using quasielastic neutron sc...
Abstract. The dynamics of propane confined in Na-Y zeolite was studied using the quasi-elastic neutr...
The diffusion of methanol in zeolite HY is studied using tandem quasielastic neutron scattering (QEN...
Zeolites are a class of aluminosilicate materials with many important industrial applications as cat...
The concentration dependence of the self-diffusivity of short-chain linear alkanes in the narrow win...
Study of diffusivity of acetylene adsorbed in Na-Y zeolite by quasi-elastic neutron scattering (QENS...
Quasi-elastic neutron scattering allows to characterise molecular diffusion of species adsorbed in p...
We report here the studies of the dynamics of acetylene molecules adsorbed in Na–Y zeolite cages usi...
We report results from molecular dynamics (MD) simulations and quasi-elastic neutron scattering (QEN...
We report results from molecular dynamics (MD) simulations and quasi-elastic neutron scattering (QEN...
Microporous catalysts, in particular zeolites, are among the most intensively investigated systems i...
Neutron scattering techniques can be used to study the different motions of molecules adsorbed in ze...
This study concerns the diffusion of single-component molecules in zeolites, characterised by an iso...
The dynamics of propane confined in Na-Y zeolite was studied using the quasi-elastic neutron scatter...
Quasi-Elastic Neutron Scattering (QENS) experiments were carried out to determine (a) Fick diffusivi...
Dynamics of ethylene glycol (EG) adsorbed in H-ZSM5 zeolite as studied using quasielastic neutron sc...
Abstract. The dynamics of propane confined in Na-Y zeolite was studied using the quasi-elastic neutr...
The diffusion of methanol in zeolite HY is studied using tandem quasielastic neutron scattering (QEN...
Zeolites are a class of aluminosilicate materials with many important industrial applications as cat...
The concentration dependence of the self-diffusivity of short-chain linear alkanes in the narrow win...