We have developed a new and user-friendly interface energy calculation method that avoids problems deriving from numerical differences between bulk and slab calculations, such as the number of k points along the direction perpendicular to the interface. We have applied this to 36 bcc-fcc metal interfaces in the (100) orientation and found a clear dependence of the interface energy on the difference between the work functions of the two metals, on the one hand, and the total number of d electrons on the other. Greater mechanical deformations were observed in fcc crystals than in their bcc counterparts. For each bcc metal, the interface energy was found to follow the position of its d band, whereas the same was not observed for fccThis public...
The presented research is an atomistic, computer modeling study of structure and energetics of inter...
The low energy interfaces identified recently for the case of silver-silver grain boundaries as well...
SIGLEAvailable from British Library Document Supply Centre- DSC:D41901/82 / BLDSC - British Library ...
We have developed a new and user-friendly interface energy calculation method that avoids problems d...
Surface energy anisotropy (SEA) has long been a hot topic in interface science as it has an importan...
File contains the data required to calculate interfacial energy densities of {100}, {110}, {111}, {2...
The surface energy of elemental metals was calculated using the stabilized jellium approach. The sur...
Ab initio calculations are employed to determine the lower and upper bounds of the interfacial energ...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
The formation energy of the interface between face-centered cubic (fcc) and hexagonal close packed (...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
The paper describes theoretical and computational studies associated with the interface elastic prop...
The structure and the anisotropic properties of the surfaces of face-centred-cubic (FCC) metals have...
Yüksek Lisans TeziTezde BCC kristal yapısındaki sistemlerden Mo, Nb, Ta ve W metallerinin arayüzey e...
The presented research is an atomistic, computer modeling study of structure and energetics of inter...
The presented research is an atomistic, computer modeling study of structure and energetics of inter...
The low energy interfaces identified recently for the case of silver-silver grain boundaries as well...
SIGLEAvailable from British Library Document Supply Centre- DSC:D41901/82 / BLDSC - British Library ...
We have developed a new and user-friendly interface energy calculation method that avoids problems d...
Surface energy anisotropy (SEA) has long been a hot topic in interface science as it has an importan...
File contains the data required to calculate interfacial energy densities of {100}, {110}, {111}, {2...
The surface energy of elemental metals was calculated using the stabilized jellium approach. The sur...
Ab initio calculations are employed to determine the lower and upper bounds of the interfacial energ...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
The formation energy of the interface between face-centered cubic (fcc) and hexagonal close packed (...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
The paper describes theoretical and computational studies associated with the interface elastic prop...
The structure and the anisotropic properties of the surfaces of face-centred-cubic (FCC) metals have...
Yüksek Lisans TeziTezde BCC kristal yapısındaki sistemlerden Mo, Nb, Ta ve W metallerinin arayüzey e...
The presented research is an atomistic, computer modeling study of structure and energetics of inter...
The presented research is an atomistic, computer modeling study of structure and energetics of inter...
The low energy interfaces identified recently for the case of silver-silver grain boundaries as well...
SIGLEAvailable from British Library Document Supply Centre- DSC:D41901/82 / BLDSC - British Library ...