First-principles calculations were carried out to study various metal-dispersed graphitic materials for applications to hydrogen storage. The binding strength between metal and graphitic fragments was investigated for efficient metal dispersion. The characteristics of hydrogen adsorption on dispersed metal atoms were also studied. It was found that either structural imperfection or chemical doping could significantly improve the metal binding strength, leading to better atomistic dispersion of metal, as well as hydrogen adsorption. The atomic and the electronic structures of metal-absorbent complexes were found to be crucial for hydrogen adsorption on metal atoms.close4
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
The dispersion of transition and alkaline-earth metals on defective graphenes is studied using first...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
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...
The characteristics of hydrogen adsorption on Al and Ti metal atoms dispersed on graphene with boron...
The noncovalent hydrogen binding on transition-metal atoms dispersed on carbon clusters and graphene...
The noncovalent hydrogen binding on transition-metal atoms dispersed on carbon clusters and graphene...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...
Based on first-principles plane wave calculations, it has been shown that boron-substituted graphene...
Structural stability and hydrogen adsorption capacity are two key quantities in evaluating the poten...
Based on first-principles plane wave calculations, it was shown that boron substituted graphene with...
Abstract. We present a systematic ab initio study of atomic hydrogen adsorption on graphene. The cha...
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...
The dispersion of transition and alkaline-earth metals on defective graphenes is studied using first...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
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...
The characteristics of hydrogen adsorption on Al and Ti metal atoms dispersed on graphene with boron...
The noncovalent hydrogen binding on transition-metal atoms dispersed on carbon clusters and graphene...
The noncovalent hydrogen binding on transition-metal atoms dispersed on carbon clusters and graphene...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...
Based on first-principles plane wave calculations, it has been shown that boron-substituted graphene...
Structural stability and hydrogen adsorption capacity are two key quantities in evaluating the poten...
Based on first-principles plane wave calculations, it was shown that boron substituted graphene with...
Abstract. We present a systematic ab initio study of atomic hydrogen adsorption on graphene. The cha...
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...
The dispersion of transition and alkaline-earth metals on defective graphenes is studied using first...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...