AbstractFirst principles slab simulations of copper 2D superlattices of different densities on the perfect MgO(001) surface are performed using the DFT method as implemented into the CRYSTAL98 computer code. In order to clarify the nature of interfacial bonding, we consider regular 1/4, 1/2 and 1 monolayer (ML) coverages and compare results of our calculations with various experimental and theoretical data. Our general conclusion is that the physical adhesion associated with a Cu polarization and charge redistribution gives the predominant contribution to the bonding of the regular Cu 2D layer on the MgO(001) surface
Adhesive energetics and interfacial electronic structures have been computed from first principles f...
The nature of the metal-ceramic interaction in the Ag/MgO(001) interface is studied using periodic H...
{l_brace}222{r_brace}MgO/Cu is one of the most extensively characterized ceramic/metal interfaces, w...
AbstractFirst principles slab simulations of copper 2D superlattices of different densities on the p...
Atomistic simulations are performed for the (222)MgO/Cu interface by local density functional theory...
We have studied the energetical and structural properties of copper clusters (Cu-n, n = 2-6, 8, 9, 1...
We have studied the energetical and structural properties of copper clusters (Cu-n, n = 2-6, 8, 9, 1...
The DFT slab calculations were performed for Ag and Cu atoms adsorbed on both regular and defective...
The atomic and electronic structure of the Ag/MgO(100) interface are calculated by means of the ab i...
The atomic and electronic structure of the Ag/MgO(100) interface are calculated by means of the ab i...
The atomic and electronic structure of the Ag/MgO(100) interface are calculated by means of the ab i...
The growth of Ag monolayers on Cu (001) was studied by periodic Density Functional Theory (DFT). Des...
First-principle density functional theory (DFT) and a periodic-slab model have been utilized to inve...
The adhesion, stability, and wetting behavior at interfaces between thin Cu films and clean Ta (110)...
Atomic structure, bond formation, and surface diffusion in a fcc Pb/Cu(111) surface system were quan...
Adhesive energetics and interfacial electronic structures have been computed from first principles f...
The nature of the metal-ceramic interaction in the Ag/MgO(001) interface is studied using periodic H...
{l_brace}222{r_brace}MgO/Cu is one of the most extensively characterized ceramic/metal interfaces, w...
AbstractFirst principles slab simulations of copper 2D superlattices of different densities on the p...
Atomistic simulations are performed for the (222)MgO/Cu interface by local density functional theory...
We have studied the energetical and structural properties of copper clusters (Cu-n, n = 2-6, 8, 9, 1...
We have studied the energetical and structural properties of copper clusters (Cu-n, n = 2-6, 8, 9, 1...
The DFT slab calculations were performed for Ag and Cu atoms adsorbed on both regular and defective...
The atomic and electronic structure of the Ag/MgO(100) interface are calculated by means of the ab i...
The atomic and electronic structure of the Ag/MgO(100) interface are calculated by means of the ab i...
The atomic and electronic structure of the Ag/MgO(100) interface are calculated by means of the ab i...
The growth of Ag monolayers on Cu (001) was studied by periodic Density Functional Theory (DFT). Des...
First-principle density functional theory (DFT) and a periodic-slab model have been utilized to inve...
The adhesion, stability, and wetting behavior at interfaces between thin Cu films and clean Ta (110)...
Atomic structure, bond formation, and surface diffusion in a fcc Pb/Cu(111) surface system were quan...
Adhesive energetics and interfacial electronic structures have been computed from first principles f...
The nature of the metal-ceramic interaction in the Ag/MgO(001) interface is studied using periodic H...
{l_brace}222{r_brace}MgO/Cu is one of the most extensively characterized ceramic/metal interfaces, w...