Using density functional theory calculations, we compare the relative stabilities and properties of different arrangements of S on Fe(110) at a 1/3 monolayer coverage, including two observed experimentally. For all studied arrangements, S is adsorbed in the three high-symmetry adsorption sites: 4-fold hollow, 3-fold hollow, bridge, and atop sites. The binding energy, work function change, adsorption geometry, charge density distribution, magnetic properties, and density of states are determined and compared. The most stable overlayer arrangement corresponds to the overlayer seen by experiment after dissociative adsorption of H2S and has S adsorbed in 4-fold hollow sites. In the other arrangements, the S atoms are located closer to each othe...
The stepped surfaces in nanoscale zero-valent iron (nZVI) play an essential role for environmental a...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for ...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for ...
The adsorption of atomic S on the Fe(1 1 0) surface is examined using density functional theory (DFT...
The effect of S contamination on the properties of Fe(100) is examined using density functional theo...
The effect of adsorbed S at different coverages on the adhesion of Fe(110) surfaces in match and mis...
The effect of adsorbed S on the adhesion of Fe(l 10) surfaces is examined using density functional t...
We employ spin-polarized periodic density functional theory (DFT) to characterize H2S and HS adsorpt...
Using periodic density functional theory we studied adsorption of H 2S, HS, S and H on the Fe(310) s...
Density functional theory was employed to examine the interactions of atomic sulfur with the Fe(1 0 ...
The Se adsorption at different coverages on DO3 FeSiAl(110) surface is studied using density functio...
The adsorption of H2S on Fe(110) is examined using ab initio molecular dynamics at 298, 800, 1000, a...
The stepped surfaces in nanoscale zero-valent iron (nZVI) play an essential role for environmental a...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for ...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for h...
The stepped surfaces in nanoscale zero-valent iron (nZVI) play an essential role for environmental a...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for ...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for ...
The adsorption of atomic S on the Fe(1 1 0) surface is examined using density functional theory (DFT...
The effect of S contamination on the properties of Fe(100) is examined using density functional theo...
The effect of adsorbed S at different coverages on the adhesion of Fe(110) surfaces in match and mis...
The effect of adsorbed S on the adhesion of Fe(l 10) surfaces is examined using density functional t...
We employ spin-polarized periodic density functional theory (DFT) to characterize H2S and HS adsorpt...
Using periodic density functional theory we studied adsorption of H 2S, HS, S and H on the Fe(310) s...
Density functional theory was employed to examine the interactions of atomic sulfur with the Fe(1 0 ...
The Se adsorption at different coverages on DO3 FeSiAl(110) surface is studied using density functio...
The adsorption of H2S on Fe(110) is examined using ab initio molecular dynamics at 298, 800, 1000, a...
The stepped surfaces in nanoscale zero-valent iron (nZVI) play an essential role for environmental a...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for ...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for h...
The stepped surfaces in nanoscale zero-valent iron (nZVI) play an essential role for environmental a...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for ...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for ...