The formation and structure of the ordered phases of Li atoms adsorbed on the Mo(112) surface are investigated by performing first-principles density-functional calculations. Large inward relaxation for the first atomic interlayer distance of the clean Mo(112) surface is found. The vertical relaxations of the substrate are only little influenced by the adsorbed Li atoms. The magnitude of lateral shifts of atoms along the atomic rows is found to be small and in line with measured values. The energetics of chain structures of Li adatoms for coverages 0.125<~Θ<~1 monolayer is determined and the p(4×1) and p(2×1) adatom structures are found to be the most favored ones in agreement with experiment. The binding energy of Li atoms decreases with i...
We use a multilayer lattice gas model for adsorption and desorption to analyze and simulate desorpti...
The experimental and theoretical surface band structures of Mo(112) are compared. This surface band ...
Absolute appearance energies of field-desorbed Li+ ions were obtained from mass-to-charge resolved r...
The formation and structure of the ordered phases of Li atoms adsorbed on the Mo(112) surface are in...
First-principles methods are used to investigate the formation and structure of the ordered phases o...
Atomic oxygen adsorption on the Mo(112) surface has been investigated by means of first-principles t...
We investigate the interaction of molecular/atomic hydrogen with the Li surface. We calculate the po...
A comprehensive examination of the Fermi surface of Mo(112) is presented. The Fermi surface contours...
Journals published by the American Physical Society can be found at http://journals.aps.org/Experime...
Periodic Hartree–Fock methods were used to calculate the geometric and electronic properties of 2H-M...
Performed density-functional theory (DFT) calculations have shown that the Li adsorption on the MoS2...
Using first-principles density functional theory calculations, we investigate adsorption properties ...
The experimental and theoretical surface band structures of Mo(112) are compared. This surface band ...
In this work we have performed first-principles calculations based on the spin-polarized density-fun...
We investigated the bond, electronic and magnetic behavior of adsorption Yttrium atoms on Lithium (...
We use a multilayer lattice gas model for adsorption and desorption to analyze and simulate desorpti...
The experimental and theoretical surface band structures of Mo(112) are compared. This surface band ...
Absolute appearance energies of field-desorbed Li+ ions were obtained from mass-to-charge resolved r...
The formation and structure of the ordered phases of Li atoms adsorbed on the Mo(112) surface are in...
First-principles methods are used to investigate the formation and structure of the ordered phases o...
Atomic oxygen adsorption on the Mo(112) surface has been investigated by means of first-principles t...
We investigate the interaction of molecular/atomic hydrogen with the Li surface. We calculate the po...
A comprehensive examination of the Fermi surface of Mo(112) is presented. The Fermi surface contours...
Journals published by the American Physical Society can be found at http://journals.aps.org/Experime...
Periodic Hartree–Fock methods were used to calculate the geometric and electronic properties of 2H-M...
Performed density-functional theory (DFT) calculations have shown that the Li adsorption on the MoS2...
Using first-principles density functional theory calculations, we investigate adsorption properties ...
The experimental and theoretical surface band structures of Mo(112) are compared. This surface band ...
In this work we have performed first-principles calculations based on the spin-polarized density-fun...
We investigated the bond, electronic and magnetic behavior of adsorption Yttrium atoms on Lithium (...
We use a multilayer lattice gas model for adsorption and desorption to analyze and simulate desorpti...
The experimental and theoretical surface band structures of Mo(112) are compared. This surface band ...
Absolute appearance energies of field-desorbed Li+ ions were obtained from mass-to-charge resolved r...