Atomic chemisorption of hydrogen and oxygen on Cu(100) has been studied using up to 25 copper atoms as a model of the surface. The computational procedure used involves a reduction of the metal atoms to one-electron systems and extensive configuration-interaction calculations of the adsorbate and the cluster-adsorbate bonds. The calculations support the fourfold hollow site as the preferred chemisorption site for oxygen, with a barrier-to-surface migration of 25 kcal/mol. The calculated chemisorption energies for both hydrogen and oxygen, 51 and 90 kcal/mol, respectively, are in good agreement with experimental estimates (56 kcal/mol for hydrogen and 97 kcal/mol for oxygen). The effects of reducing the metal atoms to one-electron systems ha...
The interaction of hydrogen with the Cu(100) surface has been investigated using a variety of experi...
Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters....
The surface characteristics of the oxygen-covered Cu{100} surface have been studied using Low Energy...
Atomic chemisorption of hydrogen and oxygen on Cu(100) has been studied using up to 25 copper atoms ...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
Atomic chemisorption of hydrogen and oxygen on the Ni(100) surface has been studied using an Effecti...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
The interaction of molecular oxygen with the Cu(1 0 0) surface has been studied by using both Hartre...
Ab initio band structure calculations within a density functional formalism were performed to comput...
The interaction of molecular oxygen with the Cu(1 0 0) surface has been studied by using both Hartre...
The interaction of hydrogen with the Cu(100) surface has been investigated using a variety of experi...
The interaction of hydrogen with the Cu(100) surface has been investigated using a variety of experi...
The interaction of hydrogen with the Cu(100) surface has been investigated using a variety of experi...
Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters....
The surface characteristics of the oxygen-covered Cu{100} surface have been studied using Low Energy...
Atomic chemisorption of hydrogen and oxygen on Cu(100) has been studied using up to 25 copper atoms ...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
Atomic chemisorption of hydrogen and oxygen on the Ni(100) surface has been studied using an Effecti...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
The interaction of molecular oxygen with the Cu(1 0 0) surface has been studied by using both Hartre...
Ab initio band structure calculations within a density functional formalism were performed to comput...
The interaction of molecular oxygen with the Cu(1 0 0) surface has been studied by using both Hartre...
The interaction of hydrogen with the Cu(100) surface has been investigated using a variety of experi...
The interaction of hydrogen with the Cu(100) surface has been investigated using a variety of experi...
The interaction of hydrogen with the Cu(100) surface has been investigated using a variety of experi...
Adsorption at surfaces can be modelled using a periodic supercell approach or using finite clusters....
The surface characteristics of the oxygen-covered Cu{100} surface have been studied using Low Energy...