Using van-der-Waals-corrected density functional theory calculations, we explore the possibility of engineering the local structure and morphology of high-surface-area graphene-derived materials to improve the uptake of methane and carbon dioxide for gas storage and sensing. We test the sensitivity of the gas adsorption energy to the introduction of native point defects, curvature, and the application of strain. The binding energy at topological point defect sites is inversely correlated with the number of missing carbon atoms, causing Stone-Wales defects to show the largest enhancement with respect to pristine graphene (similar to 20%). Improvements of similar magnitude are observed at concavely curved surfaces in buckled graphene sheets u...
Hydrogen (H2) is an excellent energy carrier and can be produced in an environmentally friendly way....
Two dimensional nanomaterials are attracting increasing attention as solid state sensors due to thei...
Recent interest in functionalized graphene has been motivated by the prospect of creating a two-dime...
Using van-der-Waals-corrected density functional theory calculations, we explore the possibility of ...
With a view towards optimizing gas storage and separation in crystalline and disordered nanoporous c...
Understanding the interaction mechanisms of CO, NO, SO2, and HCHO with graphene are important in dev...
A combination of ab initio and classical Monte Carlo simulations is used to investigate the effects ...
Pure graphene is known as the strongest material ever discovered. However, the unavoidable defect fo...
ABSTRACT: Bundles of single-walled nanotubes are promising candidates for storage of hydrogen, metha...
Abstract The exceptional properties of two-dimensional (2D) solids have motivated extensive research...
The geometrical properties of the reservoir rocks are usually affected by natural thermodynamics or ...
Density functional theory (DFT) level calculations were performed to study the interaction of hydrog...
The ability of atomic hydrogen to chemisorb on graphene makes the latter a promising material for hy...
Graphene is a strong, single atom-thick, lightweight, anti-corrosive, high surface area, low electri...
Layered materials, such as graphene, have attracted increasing interests since they can be extensive...
Hydrogen (H2) is an excellent energy carrier and can be produced in an environmentally friendly way....
Two dimensional nanomaterials are attracting increasing attention as solid state sensors due to thei...
Recent interest in functionalized graphene has been motivated by the prospect of creating a two-dime...
Using van-der-Waals-corrected density functional theory calculations, we explore the possibility of ...
With a view towards optimizing gas storage and separation in crystalline and disordered nanoporous c...
Understanding the interaction mechanisms of CO, NO, SO2, and HCHO with graphene are important in dev...
A combination of ab initio and classical Monte Carlo simulations is used to investigate the effects ...
Pure graphene is known as the strongest material ever discovered. However, the unavoidable defect fo...
ABSTRACT: Bundles of single-walled nanotubes are promising candidates for storage of hydrogen, metha...
Abstract The exceptional properties of two-dimensional (2D) solids have motivated extensive research...
The geometrical properties of the reservoir rocks are usually affected by natural thermodynamics or ...
Density functional theory (DFT) level calculations were performed to study the interaction of hydrog...
The ability of atomic hydrogen to chemisorb on graphene makes the latter a promising material for hy...
Graphene is a strong, single atom-thick, lightweight, anti-corrosive, high surface area, low electri...
Layered materials, such as graphene, have attracted increasing interests since they can be extensive...
Hydrogen (H2) is an excellent energy carrier and can be produced in an environmentally friendly way....
Two dimensional nanomaterials are attracting increasing attention as solid state sensors due to thei...
Recent interest in functionalized graphene has been motivated by the prospect of creating a two-dime...