The mutual influence of surface geometry (e.g. lattice parameters, morphology) and electronic structure is discussed for Cu-Ni bimetallic (111) surfaces. It is found that on flat surfaces the electronic d-states of the adlayer experience very little influence from the substrate electronic structure which is due to their large separation in binding energies and the close match of Cu and Ni lattice constants. Using carbon monoxide and benzene as probe molecules, it is found that in most cases the reactivity of Cu or Ni adlayers is very similar to the corresponding (111) single crystal surfaces. Exceptions are the adsorption of CO on submonolayers of Cu on Ni(111) and the dissociation of benzene on Ni/Cu(111) which is very different from Ni(11...
Density function theory has been used to describe the adsorption of C, O and CO on a Ni(111) surface...
In this work, the adsorption of CO onto the surface of the transition metal Ni at different coverage...
Modifying the electronic and optical properties of surfaces and nanostructures are in the forefront ...
Quantitative structure determinations using scanned- energy mode photoelectron diffraction are prese...
This topical review discusses the influence of the surface geometry (e.g. lattice parameters and ter...
Experimental and theoretical results are presented for Cu on an Ni(111) surface. The monolayer case...
The interaction of Ni(CO)4/CO gas mixtures with Cu(111) and Cu(110) single crystal surfaces has been...
Water dissociation is the rate-determining step (RDS) in the industrially important water gas shift ...
The adsorption energy of carbon monoxide on Ni ad-islands and ultra-thin films grown on the Cu(110) ...
A density functional theory (DFT) calculation has been carried out to systematically investigate the...
CO adsorption on Cu(100), (110), and (111) surfaces has been extensively studied using Kohn–Sham den...
The adsorption of benzene on the Cu(111), Ag(111), Au(111), and Cu(110) surfaces at low coverage is ...
The adsorption of CN on Cu(111), Ni(111) and Ni(100) has been investigated using density functional ...
The adsorption of a variety of molecules on Ni(111) is studied UV/visible spectroscopic ellipsometry...
Reliability is one of the major concerns and challenges in designing organic/inorganic interfaces fo...
Density function theory has been used to describe the adsorption of C, O and CO on a Ni(111) surface...
In this work, the adsorption of CO onto the surface of the transition metal Ni at different coverage...
Modifying the electronic and optical properties of surfaces and nanostructures are in the forefront ...
Quantitative structure determinations using scanned- energy mode photoelectron diffraction are prese...
This topical review discusses the influence of the surface geometry (e.g. lattice parameters and ter...
Experimental and theoretical results are presented for Cu on an Ni(111) surface. The monolayer case...
The interaction of Ni(CO)4/CO gas mixtures with Cu(111) and Cu(110) single crystal surfaces has been...
Water dissociation is the rate-determining step (RDS) in the industrially important water gas shift ...
The adsorption energy of carbon monoxide on Ni ad-islands and ultra-thin films grown on the Cu(110) ...
A density functional theory (DFT) calculation has been carried out to systematically investigate the...
CO adsorption on Cu(100), (110), and (111) surfaces has been extensively studied using Kohn–Sham den...
The adsorption of benzene on the Cu(111), Ag(111), Au(111), and Cu(110) surfaces at low coverage is ...
The adsorption of CN on Cu(111), Ni(111) and Ni(100) has been investigated using density functional ...
The adsorption of a variety of molecules on Ni(111) is studied UV/visible spectroscopic ellipsometry...
Reliability is one of the major concerns and challenges in designing organic/inorganic interfaces fo...
Density function theory has been used to describe the adsorption of C, O and CO on a Ni(111) surface...
In this work, the adsorption of CO onto the surface of the transition metal Ni at different coverage...
Modifying the electronic and optical properties of surfaces and nanostructures are in the forefront ...