The nature of the metal-ceramic interaction in the Ag/MgO(001) interface is studied using periodic Hartree-Fock calculations with density functional theory a posteriori correlation corrections. Different aspects of the Ag-MgO interaction have been studied by analysis of the electronic properties: total and projected density of states, multipole moments, bond population, and the difference electron density. By linking these properties to the adsorption energy and making a comparative analysis for interfaces with different degrees of coverage and different adsorption models (one- and two-sided adsorption), a detailed description of the Ag-MgO has been acquired
The DFT slab calculations were performed for Ag and Cu atoms adsorbed on both regular and defective...
AbstractWe have calculated the atomic and electronic structures of Ag–MgO(100) and (110) interfaces ...
The Ag/alpha-Al2O3(0001) interface was simulated using ab initio slab calculations. We have studied...
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...
AbstractWe have calculated the atomic and electronic structures of Ag–MgO(100) and (110) interfaces ...
The interface of MgO/Ag(001) has been studied with density functional theory applied to slabs. We ha...
Defects in thin oxide films on metal substrates affect metal work function and determine the chemica...
A systematic approach is proposed to obtain the interfacial interatomic potentials. By inverting ab ...
Ab initio computer simulations of the atomic and electronic structure of the Ag/alpha-Al2O3(0 0 0 1...
The interface of MgO/Ags001d has been studied with density functional theory applied to slabs. We ha...
The interface of MgO/Ags001d has been studied with density functional theory applied to slabs. We ha...
Using an ab initio total energy approach, we study the electronic structure of metal/MgO(100) interf...
Using an ab initio total energy approach, we study the electronic structure of metal/MgO(100) interf...
The DFT slab calculations were performed for Ag and Cu atoms adsorbed on both regular and defective...
AbstractWe have calculated the atomic and electronic structures of Ag–MgO(100) and (110) interfaces ...
The Ag/alpha-Al2O3(0001) interface was simulated using ab initio slab calculations. We have studied...
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...
AbstractWe have calculated the atomic and electronic structures of Ag–MgO(100) and (110) interfaces ...
The interface of MgO/Ag(001) has been studied with density functional theory applied to slabs. We ha...
Defects in thin oxide films on metal substrates affect metal work function and determine the chemica...
A systematic approach is proposed to obtain the interfacial interatomic potentials. By inverting ab ...
Ab initio computer simulations of the atomic and electronic structure of the Ag/alpha-Al2O3(0 0 0 1...
The interface of MgO/Ags001d has been studied with density functional theory applied to slabs. We ha...
The interface of MgO/Ags001d has been studied with density functional theory applied to slabs. We ha...
Using an ab initio total energy approach, we study the electronic structure of metal/MgO(100) interf...
Using an ab initio total energy approach, we study the electronic structure of metal/MgO(100) interf...
The DFT slab calculations were performed for Ag and Cu atoms adsorbed on both regular and defective...
AbstractWe have calculated the atomic and electronic structures of Ag–MgO(100) and (110) interfaces ...
The Ag/alpha-Al2O3(0001) interface was simulated using ab initio slab calculations. We have studied...