Ethylene adsorption on a Ni-55 nanocluster was studied by Weal IS of the density functional theory (DFT)/B3LYP using the basis sets of 6-31G(d,p) and 86-411(41d)G in Gaussian 03. The Ni-55 nanocluster was found to have a distorted icosahedral geometry, in accordance with the experimental findings. The binding energy value for the Ni-55 nanocluster was calculated to be 3.51 eV/atom using equilibrium geometry calculations. The estimated bulk nickel binding energy was in reasonable agreement with the experimental value (4.85 versus 4.45 eV/atom). In addition, equilibrium geometry calculations were performed for ethylene adsorption on the Ni-55 nanocluster for 2 different coordination numbers of 6 and 8 with pi-adsorption modes. The related ads...
The dissociation reactions of ethylene molecules on a Ni cluster are examined by means of ab initio ...
The dissociation reactions of ethylene molecules on a Ni cluster are examined by means of ab initio ...
In the present work, the Atom Superposition and Electron Delocalization method has been applied in o...
Ethylene adsorption was studied by use of DFT/B3LYP with basis set 6-31G(d, p) in Gaussian' 03 softw...
Ethylene hydrogenation on Ni(111); equilibrium geometry calculations for Ni2 dimer, Ni13 and Ni55 na...
Density functional theory calculations have been used to investigate the adsorption of ethylene on P...
Density functional theory calculations have been used to investigate the adsorption of ethylene on P...
Density functional theory calculations have been used to investigate the adsorption of ethylene on P...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
The dissociative adsorption of ethylene (C2H4) on Ni(1 1 1) was studied by scanning tunneling micros...
The dissociation reactions of ethylene molecules on a Ni cluster are examined by means of ab initio ...
The dissociation reactions of ethylene molecules on a Ni cluster are examined by means of ab initio ...
In the present work, the Atom Superposition and Electron Delocalization method has been applied in o...
Ethylene adsorption was studied by use of DFT/B3LYP with basis set 6-31G(d, p) in Gaussian' 03 softw...
Ethylene hydrogenation on Ni(111); equilibrium geometry calculations for Ni2 dimer, Ni13 and Ni55 na...
Density functional theory calculations have been used to investigate the adsorption of ethylene on P...
Density functional theory calculations have been used to investigate the adsorption of ethylene on P...
Density functional theory calculations have been used to investigate the adsorption of ethylene on P...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
Optimized geometries and adsorption energies obtained from non- local density functional calculation...
The dissociative adsorption of ethylene (C2H4) on Ni(1 1 1) was studied by scanning tunneling micros...
The dissociation reactions of ethylene molecules on a Ni cluster are examined by means of ab initio ...
The dissociation reactions of ethylene molecules on a Ni cluster are examined by means of ab initio ...
In the present work, the Atom Superposition and Electron Delocalization method has been applied in o...