The density functional formalism has been used to investigate the stability and the properties of small palladium clusters supported on graphdiyne layers. The large triangular holes existing on the graphdiyne structure provide efficient sites to hold the clusters at small distances from the plane of the graphdiyne layer. The cluster adsorption energies, between 3 and 4 eV, are large enough to maintain the clusters tightly bound to the triangular holes. The competition between dispersion of Pd atoms on graphdiyne and growth of Pd clusters in the triangular holes of the layer is also discussed. In addition, the triangular holes can be simultaneously decorated with clusters on both sides. This indicates that palladium clusters could be used to...
Motivated by experimental results on transport properties of graphene covered by gallium atoms, the ...
Density functional theory calculations are used to investigate ethylene hydrogenation over palladium...
Transition Metal (TM) atom adsorption on γ-graphyne is here studied to unravel the electronic and ma...
Producción CientíficaHydrogen adsorption on nanoporous carbon materials is a promising technology fo...
Producción CientíficaThe contribution of Pd doping to enhance the hydrogen storage capacity of porou...
Producción CientíficaThe hydrogen storage capacity of nanoporous carbons can be enhanced through met...
DFT calculations have been performed on a palladium cluster adsorbed on two different carbonaceous s...
Density functional theory st udies were performed to und erstand the early stage of graphene like st...
Doping of porous carbon materials with metallic atoms, clusters and nanoparticles is viewed as a way...
Experimental evidence exists for the enhancement of the hydrogen storage capacity of porous carbons ...
Experimental evidence exists for the enhancement of the hydrogen storage capacity of porous carbons ...
Palladium doping enhances the hydrogen storage capacity of nanoporous carbons. The purpose of this ...
Nanoparticles exhibit characteristics that are different from bulk materials as well as from atoms r...
Stability and electronic properties of small Pd-n clusters (n = 1-5), adsorbed on different types of...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Motivated by experimental results on transport properties of graphene covered by gallium atoms, the ...
Density functional theory calculations are used to investigate ethylene hydrogenation over palladium...
Transition Metal (TM) atom adsorption on γ-graphyne is here studied to unravel the electronic and ma...
Producción CientíficaHydrogen adsorption on nanoporous carbon materials is a promising technology fo...
Producción CientíficaThe contribution of Pd doping to enhance the hydrogen storage capacity of porou...
Producción CientíficaThe hydrogen storage capacity of nanoporous carbons can be enhanced through met...
DFT calculations have been performed on a palladium cluster adsorbed on two different carbonaceous s...
Density functional theory st udies were performed to und erstand the early stage of graphene like st...
Doping of porous carbon materials with metallic atoms, clusters and nanoparticles is viewed as a way...
Experimental evidence exists for the enhancement of the hydrogen storage capacity of porous carbons ...
Experimental evidence exists for the enhancement of the hydrogen storage capacity of porous carbons ...
Palladium doping enhances the hydrogen storage capacity of nanoporous carbons. The purpose of this ...
Nanoparticles exhibit characteristics that are different from bulk materials as well as from atoms r...
Stability and electronic properties of small Pd-n clusters (n = 1-5), adsorbed on different types of...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Motivated by experimental results on transport properties of graphene covered by gallium atoms, the ...
Density functional theory calculations are used to investigate ethylene hydrogenation over palladium...
Transition Metal (TM) atom adsorption on γ-graphyne is here studied to unravel the electronic and ma...