International audienceWe report a study on adsorption and coadsorption of H2 and D2 in FAU, MFI and CHA pure silica zeolites having different pore size and shape. Adsorption capacities, selectivities, enthalpies and entropies are determined by combining experiments and GCMC simulations. We show that the force fields available in the literature cannot predict the adsorption equilibria below 77 K with sufficient accuracy. Here we propose a new force field adjusted by using our experimental data obtained for pure silica MFI zeolite at 65 K and 77 K. With this new force field, it is possible to predict adsorption and coadsorption equilibria on the three zeolite structures in a temperature range between 47 and 77 K with satisfactory precision. W...
Adsorption processes are turning more and more important for heat transformation applications like t...
When all cages are assumed to be accessible, popular force fields such as universal force field (UFF...
International audienceEquilibrium D2/H2 adsorption selectivity was determined at 77.4 K below 1000 h...
International audienceWe report a study on adsorption and coadsorption of H2 and D2 in FAU, MFI and ...
International audienceWe report a study on adsorption and coadsorption of H2 and D2 in FAU, MFI and ...
We present a systematic and comprehensive investigation of available CO<sub>2</sub> force fields for...
The force fields used to simulate the gas adsorption in porous materials are strongly dominated by t...
We demonstrate a new approach to develop transferable force fields describing molecular adsorption i...
We provide transferable force fields for oxygen, nitrogen, and carbon monoxide that are able to repr...
Most previous studies on development of force fields for molecules in porous materials focus on pred...
Quantum mechanics/molecular mechanics (QM/MM) simulations provide an efficient avenue for studying r...
The overall objective of this thesis has been to develop accurate computational methods for the diff...
Force-field-based grand-canonical Monte Carlo (GCMC) simulations of carbon dioxide and nitrogen adso...
We present a molecular simulation study on the most suitable zeolite topologies for hydrogen adsorpt...
We have developed and applied a new force field for the simultaneous movement of cations and hydrofl...
Adsorption processes are turning more and more important for heat transformation applications like t...
When all cages are assumed to be accessible, popular force fields such as universal force field (UFF...
International audienceEquilibrium D2/H2 adsorption selectivity was determined at 77.4 K below 1000 h...
International audienceWe report a study on adsorption and coadsorption of H2 and D2 in FAU, MFI and ...
International audienceWe report a study on adsorption and coadsorption of H2 and D2 in FAU, MFI and ...
We present a systematic and comprehensive investigation of available CO<sub>2</sub> force fields for...
The force fields used to simulate the gas adsorption in porous materials are strongly dominated by t...
We demonstrate a new approach to develop transferable force fields describing molecular adsorption i...
We provide transferable force fields for oxygen, nitrogen, and carbon monoxide that are able to repr...
Most previous studies on development of force fields for molecules in porous materials focus on pred...
Quantum mechanics/molecular mechanics (QM/MM) simulations provide an efficient avenue for studying r...
The overall objective of this thesis has been to develop accurate computational methods for the diff...
Force-field-based grand-canonical Monte Carlo (GCMC) simulations of carbon dioxide and nitrogen adso...
We present a molecular simulation study on the most suitable zeolite topologies for hydrogen adsorpt...
We have developed and applied a new force field for the simultaneous movement of cations and hydrofl...
Adsorption processes are turning more and more important for heat transformation applications like t...
When all cages are assumed to be accessible, popular force fields such as universal force field (UFF...
International audienceEquilibrium D2/H2 adsorption selectivity was determined at 77.4 K below 1000 h...