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dc.contributor.authorLekka, C. E.en
dc.contributor.authorBernstein, N.en
dc.contributor.authorPapaconstantopoulos, D. A.en
dc.contributor.authorMehl, M. J.en
dc.date.accessioned2015-11-24T17:37:39Z-
dc.date.available2015-11-24T17:37:39Z-
dc.identifier.issn0921-5107-
dc.identifier.urihttps://olympias.lib.uoi.gr/jspui/handle/123456789/14387-
dc.rightsDefault Licence-
dc.subjecttight bindingen
dc.subjectband calculationsen
dc.subjectatomic defectsen
dc.subjectalloysen
dc.subjectmolecular-dynamics simulationsen
dc.subjectniobium-molybdenum alloysen
dc.subjecttransition-metalsen
dc.subjectnoble-metalsen
dc.subjectstructural-propertiesen
dc.subjectphonon dispersionen
dc.subjectlattice-dynamicsen
dc.subjectvacancyen
dc.subjectsurfacesen
dc.subjectmoen
dc.titleProperties of bcc metals by tight-binding total energy simulationsen
heal.typejournalArticle-
heal.type.enJournal articleen
heal.type.elΆρθρο Περιοδικούel
heal.identifier.primaryDOI 10.1016/j.mseb.2009.04.014-
heal.identifier.secondary<Go to ISI>://000268421900002-
heal.languageen-
heal.accesscampus-
heal.recordProviderΠανεπιστήμιο Ιωαννίνων. Σχολή Θετικών Επιστημών. Τμήμα Μηχανικών Επιστήμης Υλικώνel
heal.publicationDate2009-
heal.abstractMonovacancies of six bcc d-transition metals V. Cr, Nb, Mo, Ta and W have been studied by tight-binding (TB) simulations using the NRL-TB method. This method satisfactorily reproduces the electronic properties, phonon frequencies, thermal expansion coefficients and atomic mean-squared displacements for pure bulk systems. The TB method shows that for group-V metals the atoms in the first neighbor shell of the vacancy relax inward by about 5% and lose charge from d orbitals, while second neighbor shell atoms relax outward by about 1%. For group-VI metals both first and second neighbor shells relax inward and gain d orbital charge, and for Mo and W the relaxation is in fact stronger for the second than the first neighbor shell. These results are not significantly affected by the use of charge self-consistent terms in the TB model. The structural and charge transfer changes are accompanied by new energy bands at selected k-points for group-VI while they cover the whole Brillouin zone (BZ) for the group-V metals. Comparison to first-principles calculations for one example, Nb, shows good agreement for the presence of new energy bands as well as the charge and structural relaxation of the first and second neighbor shells. (C) 2009 Elsevier B.V. All rights reserved.en
heal.publisherElsevieren
heal.journalNameMaterials Science and Engineering B-Advanced Functional Solid-State Materialsen
heal.journalTypepeer reviewed-
heal.fullTextAvailabilityTRUE-
Appears in Collections:Άρθρα σε επιστημονικά περιοδικά ( Ανοικτά)

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