Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters. For many systems and properties these models are complementary and often the most productive way to work is to use a combination of these techniques. If reliable data is to be obtained it is essential that convergence is achieved with respect to the size of supercell and cluster. This work discusses the convergence of chemisorption properties of H on Cu(001) with respect to the cluster size. To this end calculations of the H binding energy and equilibrium distance, are reported for cluster models of increasing size containing up to 77 metal atoms. Likewise, periodic slab model calculations are used to provide the corresponding values towards...
Within full relativistic four-component ab initio density functional calculations we examined the ad...
Ab initio band structure calculations within a density functional formalism were performed to comput...
Model calculations lor the chemisorption o f hydrogen atoms on nickel (111), (100) and (110) surface...
Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters....
Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters....
A new rule is suggested for calculating chemisorption energies using the cluster model. This rule is...
A new rule is suggested for calculating chemisorption energies using the cluster model. This rule is...
Density Functional Theory (DFT) calculations using GAUSSIAN 98 have been performed on hydrogen adsor...
Atomic chemisorption of hydrogen and oxygen on Cu(100) has been studied using up to 25 copper atoms ...
Atomic chemisorption of hydrogen and oxygen on Cu(100) has been studied using up to 25 copper atoms ...
Within full relativistic four-component ab initio density functional calculations, we examined the a...
Typescript (photocopy).Hydrogen chemisorption, the magnetism of small metal clusters, and the many-b...
[[abstract]]The surface structures of atomic hydrogen adsorbed on Cu(1 1 1) surface have been studie...
Within full relativistic four-component ab initio density functional calculations we examined the ad...
The extended Hückel molecular orbital theory is applied to adsorption of atomic hydrogen on (111), (...
Within full relativistic four-component ab initio density functional calculations we examined the ad...
Ab initio band structure calculations within a density functional formalism were performed to comput...
Model calculations lor the chemisorption o f hydrogen atoms on nickel (111), (100) and (110) surface...
Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters....
Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters....
A new rule is suggested for calculating chemisorption energies using the cluster model. This rule is...
A new rule is suggested for calculating chemisorption energies using the cluster model. This rule is...
Density Functional Theory (DFT) calculations using GAUSSIAN 98 have been performed on hydrogen adsor...
Atomic chemisorption of hydrogen and oxygen on Cu(100) has been studied using up to 25 copper atoms ...
Atomic chemisorption of hydrogen and oxygen on Cu(100) has been studied using up to 25 copper atoms ...
Within full relativistic four-component ab initio density functional calculations, we examined the a...
Typescript (photocopy).Hydrogen chemisorption, the magnetism of small metal clusters, and the many-b...
[[abstract]]The surface structures of atomic hydrogen adsorbed on Cu(1 1 1) surface have been studie...
Within full relativistic four-component ab initio density functional calculations we examined the ad...
The extended Hückel molecular orbital theory is applied to adsorption of atomic hydrogen on (111), (...
Within full relativistic four-component ab initio density functional calculations we examined the ad...
Ab initio band structure calculations within a density functional formalism were performed to comput...
Model calculations lor the chemisorption o f hydrogen atoms on nickel (111), (100) and (110) surface...