Understanding atomic-level mechanisms of methane adsorption in nanoporous materials is of great importance to increase their methane storage capacity targeting energy sources with low carbon emission. In this work, we considered layered covalent organic frameworks (COFs) with low density and revealed the effect of slipping and chemical functionalization on their methane adsorption and separation properties. We performed grand canonical Monte Carlo simulations studies of methane (CH<sub>4</sub>) adsorption and carbon-dioxide:methane (CO<sub>2</sub>:CH<sub>4</sub>) separation in various slipped structures of TpPa1, TpBD, PI-COFs, and functionalized TpPa1 and TpBD COFs as well. We observed that the slipping improves the total CH<sub>4</sub> up...
Introduction/PurposeStorage and separation of gases are one of the most challenging processes when t...
Introduction/PurposeStorage and separation of gases are one of the most challenging processes when t...
To store natural gas (NG) inexpensively at adequate densities for use as a fuel in the transportatio...
Understanding atomic-level mechanisms of methane adsorption in nanoporous materials is of great impo...
Understanding atomic-level mechanisms of methane adsorption in nanoporous materials is of great impo...
We determined the methane (CH_4) uptake (at 298 K and 1 to 100 bar pressure) for a variety of covale...
Nanoporous materials offer energy efficient separation and storage of greenhouse gases including CO2...
We designed 14 new covalent organic frameworks (COFs), which are expected to adsorb large amounts of...
Metal–organic frameworks (MOFs) are a novel family of physisorptive materials that have exhibited gr...
<p>Covalent organic frameworks (COFs) are a promising gas separation material which have been develo...
The methane uptakes of six double halogen substituted covalent organic frameworks (COFs) based on CO...
The geometrical and topological features of metal-organic frameworks (MOFs) play an important role i...
Highly porous materials have the potential to greatly increase storage efficiency of gaseous materia...
Introduction/PurposeStorage and separation of gases are one of the most challenging processes when t...
Introduction/PurposeStorage and separation of gases are one of the most challenging processes when t...
Introduction/PurposeStorage and separation of gases are one of the most challenging processes when t...
Introduction/PurposeStorage and separation of gases are one of the most challenging processes when t...
To store natural gas (NG) inexpensively at adequate densities for use as a fuel in the transportatio...
Understanding atomic-level mechanisms of methane adsorption in nanoporous materials is of great impo...
Understanding atomic-level mechanisms of methane adsorption in nanoporous materials is of great impo...
We determined the methane (CH_4) uptake (at 298 K and 1 to 100 bar pressure) for a variety of covale...
Nanoporous materials offer energy efficient separation and storage of greenhouse gases including CO2...
We designed 14 new covalent organic frameworks (COFs), which are expected to adsorb large amounts of...
Metal–organic frameworks (MOFs) are a novel family of physisorptive materials that have exhibited gr...
<p>Covalent organic frameworks (COFs) are a promising gas separation material which have been develo...
The methane uptakes of six double halogen substituted covalent organic frameworks (COFs) based on CO...
The geometrical and topological features of metal-organic frameworks (MOFs) play an important role i...
Highly porous materials have the potential to greatly increase storage efficiency of gaseous materia...
Introduction/PurposeStorage and separation of gases are one of the most challenging processes when t...
Introduction/PurposeStorage and separation of gases are one of the most challenging processes when t...
Introduction/PurposeStorage and separation of gases are one of the most challenging processes when t...
Introduction/PurposeStorage and separation of gases are one of the most challenging processes when t...
To store natural gas (NG) inexpensively at adequate densities for use as a fuel in the transportatio...