The noncovalent hydrogen binding on transition-metal atoms dispersed on carbon clusters and graphene is studied with the use of the pseudopotential density-functional method. It is found that the presence of acceptorlike states in the absorbents is essential for enhancing the metal adsorption strength and for increasing the number of hydrogen molecules attached to the metal atoms. Particular configurations of boron substitutional doping are found to be very efficient for providing such states and thus enhancing storage capacity. Optimal doping conditions are suggested based on our calculations for the binding energy and ratio between metal and hydrogen molecules.open1192sciescopu
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
We have investigated functionalized 2D carbon allotrope, graphdiyne (GDY), as a promising hydrogen s...
Based on first-principles plane wave calculations, it has been shown that boron-substituted graphene...
The noncovalent hydrogen binding on transition-metal atoms dispersed on carbon clusters and graphene...
First-principles calculations were carried out to study various metal-dispersed graphitic materials ...
We study the pyridinelike nitrogen-doped graphene (PNG) with dispersed transition metal (TM) atoms a...
The characteristics of hydrogen adsorption on Al and Ti metal atoms dispersed on graphene with boron...
We carried out first-principles calculations to study various metal-dispersed graphitic fragments fo...
We carried out first-principles calculations to study various metal-dispersed graphitic fragments fo...
We study the pyridinelike nitrogen-doped graphene (PNG) with dispersed transition metal (TM) atoms a...
The lack of efficient hydrogen storage materials has hindered the potential use of hydrogen as fuel ...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
Hydrogen has been viewed as a clean synthetic energy carrier that could replace fossil fuels, especi...
Hydrogen has been viewed as a clean synthetic energy carrier that could replace fossil fuels, especi...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
We have investigated functionalized 2D carbon allotrope, graphdiyne (GDY), as a promising hydrogen s...
Based on first-principles plane wave calculations, it has been shown that boron-substituted graphene...
The noncovalent hydrogen binding on transition-metal atoms dispersed on carbon clusters and graphene...
First-principles calculations were carried out to study various metal-dispersed graphitic materials ...
We study the pyridinelike nitrogen-doped graphene (PNG) with dispersed transition metal (TM) atoms a...
The characteristics of hydrogen adsorption on Al and Ti metal atoms dispersed on graphene with boron...
We carried out first-principles calculations to study various metal-dispersed graphitic fragments fo...
We carried out first-principles calculations to study various metal-dispersed graphitic fragments fo...
We study the pyridinelike nitrogen-doped graphene (PNG) with dispersed transition metal (TM) atoms a...
The lack of efficient hydrogen storage materials has hindered the potential use of hydrogen as fuel ...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
Hydrogen has been viewed as a clean synthetic energy carrier that could replace fossil fuels, especi...
Hydrogen has been viewed as a clean synthetic energy carrier that could replace fossil fuels, especi...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
We have investigated functionalized 2D carbon allotrope, graphdiyne (GDY), as a promising hydrogen s...
Based on first-principles plane wave calculations, it has been shown that boron-substituted graphene...