In this paper we investigate the difference between the adsorption of spherical molecule argon (at 87.3 K) and the flexible normal butane (at an equivalent temperature of 150 K) in carbon slit pores. These temperatures are equivalent in the sense that they have the same relative distances between their respective triple points and critical points. Higher equivalent temperatures are also studied (122.67 K for argon and 303 K for n-butane) to investigate the effects of temperature on the 2D-transition in adsorbed density. The Grand Canonical Monte Carlo simulation is used to study the adsorption of these two model adsorbates. Beside the longer computation times involved in the computation of n-butane adsorption, n-butane exhibits many interes...
In this paper, we investigate the suitability of the grand canonical Monte Carlo in the description ...
We present GCMC simulations of adsorption of argon in slitlike pores that can swell or shrink with a...
We investigate in detail the computer simulation of argon adsorption on a graphite surface over a ve...
Using Grand Canonical Monte Carlo simulation, we have studied the effects of confinement on argon an...
In this paper we consider the adsorption of argon on the surface of graphitized thermal carbon black...
We model nongraphitized carbon black surfaces and investigate adsorption of argon on these surfaces ...
Bin grand canonical Monte Carlo (Bin-GCMC) simulations are compared with conventional GCMC in a comp...
A Grand Canonical Monte Carlo simulation (GCMC) method is used to study the effects of pore constric...
In this paper, we evaluate the performance of the 1- and 5-site models of methane on the description...
The primary goal of this thesis is to use molecular simulations to identify the structural propertie...
Adsorption is an industrially important process that remains a vibrant and continuing area of resear...
Activated carbons are amorphous microporous graphitic materials formed (or activated) from a variety...
Using a grand canonical Monte Carlo simulation, we study argon adsorption in graphitic cylindrical p...
Amorphous materials are usually characterized using nitrogen adsorption isotherms at 77 K taken at p...
The phase evolution of argon adsorbed in open ended graphitic slit pores at temperatures below the 2...
In this paper, we investigate the suitability of the grand canonical Monte Carlo in the description ...
We present GCMC simulations of adsorption of argon in slitlike pores that can swell or shrink with a...
We investigate in detail the computer simulation of argon adsorption on a graphite surface over a ve...
Using Grand Canonical Monte Carlo simulation, we have studied the effects of confinement on argon an...
In this paper we consider the adsorption of argon on the surface of graphitized thermal carbon black...
We model nongraphitized carbon black surfaces and investigate adsorption of argon on these surfaces ...
Bin grand canonical Monte Carlo (Bin-GCMC) simulations are compared with conventional GCMC in a comp...
A Grand Canonical Monte Carlo simulation (GCMC) method is used to study the effects of pore constric...
In this paper, we evaluate the performance of the 1- and 5-site models of methane on the description...
The primary goal of this thesis is to use molecular simulations to identify the structural propertie...
Adsorption is an industrially important process that remains a vibrant and continuing area of resear...
Activated carbons are amorphous microporous graphitic materials formed (or activated) from a variety...
Using a grand canonical Monte Carlo simulation, we study argon adsorption in graphitic cylindrical p...
Amorphous materials are usually characterized using nitrogen adsorption isotherms at 77 K taken at p...
The phase evolution of argon adsorbed in open ended graphitic slit pores at temperatures below the 2...
In this paper, we investigate the suitability of the grand canonical Monte Carlo in the description ...
We present GCMC simulations of adsorption of argon in slitlike pores that can swell or shrink with a...
We investigate in detail the computer simulation of argon adsorption on a graphite surface over a ve...