Grand canonical Monte Carlo simulations were used to explore the adsorption behavior of methane, ethane, ethylene, and carbon dioxide in isoreticular metal–organic frameworks, IRMOF-1, noninterpenetrated IRMOF-8, and interpenetrated IRMOF-8. The simulated isotherms are compared with experimentally measured isotherms, when available, and a good agreement is observed. In the case of IRMOF-8, the agreement is much better for the interpenetrated model than for the noninterpenetrated model, suggesting that the experimental data was obtained on an essentially interpenetrated structure. Simulations show that carbon dioxide is preferentially adsorbed over methane, and a selective adsorption at low pressures of ethane over ethylene, especially in th...
Metal–organic frameworks (MOFs) have been considered as highly promising materials for adsorption-ba...
Herein, a hybrid Monte Carlo (MC)/molecular dynamics (MD) simulation protocol that properly accounts...
Using grand canonical Monte Carlo (GCMC) simulations with our recently developed first-principles-ba...
Grand canonical Monte Carlo simulations were used to explore the adsorption behavior of methane, eth...
In this work a systematic molecular simulation study was performed to study the effect of interpenet...
The separation of ethylene from ethane is one of the most energy-intensive single distillations prac...
International audienceWe present here a molecular simulation study of the adsorption of CO2 in three...
Large surface area, high gas adsorption capacity and convenient synthesis methods make microporous ...
Large surface area, high gas adsorption capacity and convenient synthesis methods make microporous m...
We present here a molecular simulation study of the adsorption of CO2 in three IRMOFs, a family of m...
As a class of porous materials, metal–organic frameworks (MOFs) show promise for the adsorption-base...
In this work, a systematic molecular simulation study was performed to compare the separation of CO2...
Adsorption processes are widely used for the storage and separation of gases in many industrial and ...
Metal organic frameworks (MOFs) are an emerging class of microporous materials which are generating ...
Metal--organic frameworks (MOFs) are porous crystalline materials that are synthesized from rigid or...
Metal–organic frameworks (MOFs) have been considered as highly promising materials for adsorption-ba...
Herein, a hybrid Monte Carlo (MC)/molecular dynamics (MD) simulation protocol that properly accounts...
Using grand canonical Monte Carlo (GCMC) simulations with our recently developed first-principles-ba...
Grand canonical Monte Carlo simulations were used to explore the adsorption behavior of methane, eth...
In this work a systematic molecular simulation study was performed to study the effect of interpenet...
The separation of ethylene from ethane is one of the most energy-intensive single distillations prac...
International audienceWe present here a molecular simulation study of the adsorption of CO2 in three...
Large surface area, high gas adsorption capacity and convenient synthesis methods make microporous ...
Large surface area, high gas adsorption capacity and convenient synthesis methods make microporous m...
We present here a molecular simulation study of the adsorption of CO2 in three IRMOFs, a family of m...
As a class of porous materials, metal–organic frameworks (MOFs) show promise for the adsorption-base...
In this work, a systematic molecular simulation study was performed to compare the separation of CO2...
Adsorption processes are widely used for the storage and separation of gases in many industrial and ...
Metal organic frameworks (MOFs) are an emerging class of microporous materials which are generating ...
Metal--organic frameworks (MOFs) are porous crystalline materials that are synthesized from rigid or...
Metal–organic frameworks (MOFs) have been considered as highly promising materials for adsorption-ba...
Herein, a hybrid Monte Carlo (MC)/molecular dynamics (MD) simulation protocol that properly accounts...
Using grand canonical Monte Carlo (GCMC) simulations with our recently developed first-principles-ba...