The processes of adsorption, fragmentation and diffusion of hydrogen on a small palladium cluster have been investigated by means of DFT and DFT/MM approaches. These studies have been performed by considering a D3h symmetry Pd9 in the isolated state as well as when supported on a portion of single-walled armchair(6,6) carbon nanotube. The hydrogen fragmentation process easily occurs on the bare Pd9 cluster, involving energy barriers of 25\u201335 kJ mol 1 and the drop in spin multiplicity on passing from the reactant to the product. The atomic hydrogen diffuses through the cluster atoms with energy barriers, which do not exceed 20 kJ mol 1, with some positions clearly identifiable as the most stable. In the case of the palladium supported s...
The possibility for hydrogen to dissociate on palladium surfaces and to diffuse subsurface makes pal...
Producción CientíficaThe contribution of Pd doping to enhance the hydrogen storage capacity of porou...
Palladium can readily dissociate and absorb hydrogen from the gas phase, making it applicable in hyd...
The processes of adsorption, fragmentation and diffusion of hydrogen on a small palladium cluster h...
This work presents a bonding study of hydrogen adsorption processes on palladium decorated carbon na...
This review shortly discusses recent results obtained by the application of density functional theor...
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 ...
Doping of porous carbon materials with metallic atoms, clusters and nanoparticles is viewed as a way...
<div><p>Catalytic activities of neutral and charged palladium (Pd) nanoparticles are compared for hy...
Molecular dynamics simulations based on density functional theory were employed to investigate the f...
DFT calculations have been performed on a palladium cluster adsorbed on two different carbonaceous s...
Producción CientíficaThe hydrogen storage capacity of nanoporous carbons can be enhanced through met...
Adsorption and desorption of hydrogen by gas-phase Pd clusters, Pd<sub><i>n</i></sub><sup>+</sup>, w...
The energetics of the chemisorption of molecular hydrogen on small-diameter armchair carbon nanotube...
The possibility for hydrogen to dissociate on palladium surfaces and to diffuse subsurface makes pal...
Producción CientíficaThe contribution of Pd doping to enhance the hydrogen storage capacity of porou...
Palladium can readily dissociate and absorb hydrogen from the gas phase, making it applicable in hyd...
The processes of adsorption, fragmentation and diffusion of hydrogen on a small palladium cluster h...
This work presents a bonding study of hydrogen adsorption processes on palladium decorated carbon na...
This review shortly discusses recent results obtained by the application of density functional theor...
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 ...
Doping of porous carbon materials with metallic atoms, clusters and nanoparticles is viewed as a way...
<div><p>Catalytic activities of neutral and charged palladium (Pd) nanoparticles are compared for hy...
Molecular dynamics simulations based on density functional theory were employed to investigate the f...
DFT calculations have been performed on a palladium cluster adsorbed on two different carbonaceous s...
Producción CientíficaThe hydrogen storage capacity of nanoporous carbons can be enhanced through met...
Adsorption and desorption of hydrogen by gas-phase Pd clusters, Pd<sub><i>n</i></sub><sup>+</sup>, w...
The energetics of the chemisorption of molecular hydrogen on small-diameter armchair carbon nanotube...
The possibility for hydrogen to dissociate on palladium surfaces and to diffuse subsurface makes pal...
Producción CientíficaThe contribution of Pd doping to enhance the hydrogen storage capacity of porou...
Palladium can readily dissociate and absorb hydrogen from the gas phase, making it applicable in hyd...