Using two different full-potential ab initio techniques we introduce a simple rule based on the number of broken first-neighbour bonds to determine the surface energies of the three noble metals Cu, Ag and Au. When one bond is broken, the rearrangement of the electronic charge for these metals does not practically lead to a change of the remaining bonds. Thus the energy needed to break a bond is independent of the surface orientation, so that the surface energy is in good approximation proportional to the number of broken nearest-neighbour bonds
Using first-principles calculations we studied the energetics (surface energy, step energy, stabilit...
The structure and the anisotropic properties of the surfaces of face-centred-cubic (FCC) metals have...
© 2017 Elsevier B.V. The nature of the single bond in the three isoelectronic coinage metal dimers C...
We apply the Green's function based full-potential (FP) screened Korringa-Kohn-Rostoker method in co...
A set of potential energy functions for noble metals: copper, silver and gold crystals has been deri...
Here we explore the accuracy of Stefan equation and broken-bond model semiempirical approaches to ob...
In order to understand the physics behind the surface properties and nano-scale phenomena, we are mo...
Empirical potential energy functions, comprising two- and three-body terms, have been derived for co...
We tested the reactivity of an Au surface against H2 and compared the reactivity with Ag, Cu, and Pt...
We investigated surface properties of metals by performing first-principles calculations. A systemat...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
International audienceWe present a semi-empirical model of cohesion in noble metals with suitable pa...
Calculation of surface energy of L12-type A3B ordering alloy was made on the basis of a broken bond ...
International audienceThe nature of the single bond in the three isoelectronic coinage metal dimers ...
Incorporating the tight-binding theory and the bond order–length–strength (BOLS) correlation into th...
Using first-principles calculations we studied the energetics (surface energy, step energy, stabilit...
The structure and the anisotropic properties of the surfaces of face-centred-cubic (FCC) metals have...
© 2017 Elsevier B.V. The nature of the single bond in the three isoelectronic coinage metal dimers C...
We apply the Green's function based full-potential (FP) screened Korringa-Kohn-Rostoker method in co...
A set of potential energy functions for noble metals: copper, silver and gold crystals has been deri...
Here we explore the accuracy of Stefan equation and broken-bond model semiempirical approaches to ob...
In order to understand the physics behind the surface properties and nano-scale phenomena, we are mo...
Empirical potential energy functions, comprising two- and three-body terms, have been derived for co...
We tested the reactivity of an Au surface against H2 and compared the reactivity with Ag, Cu, and Pt...
We investigated surface properties of metals by performing first-principles calculations. A systemat...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
International audienceWe present a semi-empirical model of cohesion in noble metals with suitable pa...
Calculation of surface energy of L12-type A3B ordering alloy was made on the basis of a broken bond ...
International audienceThe nature of the single bond in the three isoelectronic coinage metal dimers ...
Incorporating the tight-binding theory and the bond order–length–strength (BOLS) correlation into th...
Using first-principles calculations we studied the energetics (surface energy, step energy, stabilit...
The structure and the anisotropic properties of the surfaces of face-centred-cubic (FCC) metals have...
© 2017 Elsevier B.V. The nature of the single bond in the three isoelectronic coinage metal dimers C...