We present new simulation results for the packing of single-center and three-center models of carbon dioxide at high pressure in carbon slit pores. The former shows a series of packing transitions that are well described by our density functional theory model developed earlier. In contrast, these transitions are absent for the three-center model. Analysis of the simulation results shows that alternations of flat-lying molecules and rotated molecules can occur as the pore width is increased. The presence or absence of quadrupoles has negligible effect on these high-density structures
Capture of CO2 from fossil fuel power plants and sequestration in unmineable coal seams are achievab...
In this paper, we present the results of the prediction of the high-pressure adsorption equilibrium ...
ABSTRACT: Carbon capture combined with utilization and storage has the potential to serve as a near-...
We present new simulation results for the packing of single-center and three-center models of carbon...
We present simulation results for the packing for single center Lennard Jones models of adsorbed flu...
© 2017 American Chemical Society. CO 2 adsorption on carbon is a CO 2 geo-storage mechanism, and a...
A one-site spherical CO(2) model and five three-site linear CO(2) models are compared for adsorption...
We present model isotherms predicted by nonlocal density functional theory for adsorption of simple ...
An important feature of improving lattice gas models and classical isotherms is the incorporation of...
The need to reduce carbon dioxide (CO<sub>2</sub>) emissions is one of the most significant environm...
In this article we utilise Grand Canonical Monte Carlo (GCMC) simulation to investigate the adsorpti...
In this paper, we evaluate the performance of three intermolecular potential models (TraPPE, HMT and...
The reliable characterization of nanoporous carbons is critical to the design and optimization of th...
Activated carbons are amorphous microporous graphitic materials formed (or activated) from a variety...
Using a one-site spherical CH4 molecular model, we predict permeabilities in carbon slit pores of wi...
Capture of CO2 from fossil fuel power plants and sequestration in unmineable coal seams are achievab...
In this paper, we present the results of the prediction of the high-pressure adsorption equilibrium ...
ABSTRACT: Carbon capture combined with utilization and storage has the potential to serve as a near-...
We present new simulation results for the packing of single-center and three-center models of carbon...
We present simulation results for the packing for single center Lennard Jones models of adsorbed flu...
© 2017 American Chemical Society. CO 2 adsorption on carbon is a CO 2 geo-storage mechanism, and a...
A one-site spherical CO(2) model and five three-site linear CO(2) models are compared for adsorption...
We present model isotherms predicted by nonlocal density functional theory for adsorption of simple ...
An important feature of improving lattice gas models and classical isotherms is the incorporation of...
The need to reduce carbon dioxide (CO<sub>2</sub>) emissions is one of the most significant environm...
In this article we utilise Grand Canonical Monte Carlo (GCMC) simulation to investigate the adsorpti...
In this paper, we evaluate the performance of three intermolecular potential models (TraPPE, HMT and...
The reliable characterization of nanoporous carbons is critical to the design and optimization of th...
Activated carbons are amorphous microporous graphitic materials formed (or activated) from a variety...
Using a one-site spherical CH4 molecular model, we predict permeabilities in carbon slit pores of wi...
Capture of CO2 from fossil fuel power plants and sequestration in unmineable coal seams are achievab...
In this paper, we present the results of the prediction of the high-pressure adsorption equilibrium ...
ABSTRACT: Carbon capture combined with utilization and storage has the potential to serve as a near-...