Shedding light on the nature of surface barriers of nanoporous materials, molecular simulations (Monte Carlo, Reactive Flux) have been employed to investigate the tracer-exchange characteristics of hydrocarbons in defect-free single-crystal zeolite membranes. The concept of a critical membrane thickness as a quantitative measure of surface barriers is shown to be appropriate and advantageous. Nanopore smoothness, framework density, and thermodynamic state of the fluid phase have been identified as the most important influencing variables of surface barriers. Despite the ideal character of the adsorbent, our simulation results clearly support current experimental findings on MOF Zn(tbip) where a larger number of crystal defects caused except...
With the aid of molecular simulation techniques (molecular dynamics [MD], Grand-Canonical Monte Carl...
We report results of molecular dynamics simulations on the transient and equilibrium surface adsorpt...
The subnanometer pore structure of zeolites and other microporous materials has been proposed to act...
Shedding light on the nature of surface barriers of nanoporous materials, molecular simulations (Mon...
We use atomistic simulations of CH4, H-2 and CO2 transport to elucidate the effect of internal inter...
Diffusion of methane and argon mixtures through single crystal membranes is studied using the Dual-C...
The regular nanoporous structure make zeolite membranes attractive candidates for separating molecul...
A comprehensive understanding of molecular transport within nanoporous materials remains elusive in ...
Experimental studies of transport in microporous materials such as zeolites and carbon molecular sie...
The variation of surface resistances to diffusion of molecules through the silicalite single-crystal...
Zeolites are crystalline aluminosilicates that are frequently used as catalysts to transform chemica...
Development of microporous materials with hierarchical structures of both micro/mesopores leads to m...
Molecular transport through the nanoporous particles, in particular, zeolite crystallites, is influe...
Zeolite ZSM-5 membranes were prepared by in situ crystallization on porous α-Al_2O_3 disks that cont...
Utilization of new hierarchical zeolites comprised of small crystallites (<50 nm) provides enhanced ...
With the aid of molecular simulation techniques (molecular dynamics [MD], Grand-Canonical Monte Carl...
We report results of molecular dynamics simulations on the transient and equilibrium surface adsorpt...
The subnanometer pore structure of zeolites and other microporous materials has been proposed to act...
Shedding light on the nature of surface barriers of nanoporous materials, molecular simulations (Mon...
We use atomistic simulations of CH4, H-2 and CO2 transport to elucidate the effect of internal inter...
Diffusion of methane and argon mixtures through single crystal membranes is studied using the Dual-C...
The regular nanoporous structure make zeolite membranes attractive candidates for separating molecul...
A comprehensive understanding of molecular transport within nanoporous materials remains elusive in ...
Experimental studies of transport in microporous materials such as zeolites and carbon molecular sie...
The variation of surface resistances to diffusion of molecules through the silicalite single-crystal...
Zeolites are crystalline aluminosilicates that are frequently used as catalysts to transform chemica...
Development of microporous materials with hierarchical structures of both micro/mesopores leads to m...
Molecular transport through the nanoporous particles, in particular, zeolite crystallites, is influe...
Zeolite ZSM-5 membranes were prepared by in situ crystallization on porous α-Al_2O_3 disks that cont...
Utilization of new hierarchical zeolites comprised of small crystallites (<50 nm) provides enhanced ...
With the aid of molecular simulation techniques (molecular dynamics [MD], Grand-Canonical Monte Carl...
We report results of molecular dynamics simulations on the transient and equilibrium surface adsorpt...
The subnanometer pore structure of zeolites and other microporous materials has been proposed to act...