Electronic structure data and analytical representations of the potential energy surface for the adsorption of carbon monoxide on a crystalline copper Cu(100) substrate are reviewed. It is found that a previously published and widely used analytical hypersurface for this process [J. C. Tully, M. Gomez, and M. Head-Gordon, J. Vac. Sci. Technol. A 11, 1914 (1993)] represents rather poorly the data obtained from a slab type calculation of the electronic structure. A new, global analytical representation of the potential energy surface for this process is derived via a nonlinear adjustment of parameters. It is more general and fits qualitatively better the electronic structure data. Key characteristic elements of the new surface are the "top" e...
The adsorption of CO over monomer, dimer and trimer of copper deposited on a SiO defect on silica su...
Carbon monoxide (CO) is a common air pollutant in the environment but at the same time an important ...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
Our ab initio calculations of CO adsorption on several low and high Miller index surfaces of Cu show...
The binding energies of (isolated) CO molecules adsorbed at several atomic sites (terrace, step, kin...
Our ab initio calculations of CO adsorption on several low and high Miller index surfaces of Cu show...
Our ab initio calculations of CO adsorption on several low and high Miller index surfaces of Cu show...
Through density functional theory (DFT) employing two different generalized gradient approximations ...
CO adsorption on Cu(100), (110), and (111) surfaces has been extensively studied using Kohn–Sham den...
CO adsorption on Cu(100), (110), and (111) surfaces has been extensively studied using Kohn–Sham den...
Adsorption energetics, structural and vibrational properties of the Cu(001)-c(2 X 2)-CO system are s...
First-principles calculations play a key role in understanding the interactions of molecules with tr...
Adsorption energetics, structural and vibrational properties of the Cu(001)-c(2 X 2)-CO system are s...
First-principles calculations play a key role in understanding the interactions of molecules with tr...
The adsorption energy of carbon monoxide on Ni ad-islands and ultra-thin films grown on the Cu(110) ...
The adsorption of CO over monomer, dimer and trimer of copper deposited on a SiO defect on silica su...
Carbon monoxide (CO) is a common air pollutant in the environment but at the same time an important ...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...
Our ab initio calculations of CO adsorption on several low and high Miller index surfaces of Cu show...
The binding energies of (isolated) CO molecules adsorbed at several atomic sites (terrace, step, kin...
Our ab initio calculations of CO adsorption on several low and high Miller index surfaces of Cu show...
Our ab initio calculations of CO adsorption on several low and high Miller index surfaces of Cu show...
Through density functional theory (DFT) employing two different generalized gradient approximations ...
CO adsorption on Cu(100), (110), and (111) surfaces has been extensively studied using Kohn–Sham den...
CO adsorption on Cu(100), (110), and (111) surfaces has been extensively studied using Kohn–Sham den...
Adsorption energetics, structural and vibrational properties of the Cu(001)-c(2 X 2)-CO system are s...
First-principles calculations play a key role in understanding the interactions of molecules with tr...
Adsorption energetics, structural and vibrational properties of the Cu(001)-c(2 X 2)-CO system are s...
First-principles calculations play a key role in understanding the interactions of molecules with tr...
The adsorption energy of carbon monoxide on Ni ad-islands and ultra-thin films grown on the Cu(110) ...
The adsorption of CO over monomer, dimer and trimer of copper deposited on a SiO defect on silica su...
Carbon monoxide (CO) is a common air pollutant in the environment but at the same time an important ...
The adsorption of oxygen atoms on different sites of the unreconstructed Cu(110) surface is explored...