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dc.contributor.authorRekab Djabri, H-
dc.contributor.authorYagoub, R-
dc.contributor.authorBahlouli, S-
dc.contributor.authorAmari, S-
dc.contributor.authorLouhibi Fasla, S-
dc.date.accessioned2020-11-03T08:36:39Z-
dc.date.available2020-11-03T08:36:39Z-
dc.date.issued2019-06-10-
dc.identifier.citationInternational Journal of Computational Materials Science and Engineering; Volumen 8 ,Número 02 ,Páginas 1950006en_US
dc.identifier.urihttp://dspace.univ-bouira.dz:8080/jspui/handle/123456789/9813-
dc.description.abstractThis paper deals with the theoretical calculation of structural and electronic, properties of AgBr and AgCl compounds using density functional theory within generalized-gradient (GGA) approximation and local density approximation (LDA). We employ the full potential linear muffin-tin orbitals (FP-LMTO) as implemented in the Lmtart code. We have used to examine structure parameter in eight different structures such as in NaCl (B1), CsCl (B2), ZB (B3), NiAs (B8), PbO (B10), Wurtzite (B4), HCP (A3) βSn (A5) structures. The equilibrium lattice parameter, bulk modulus and its pressure derivative were presented for all calculated phases. The calculated ground state properties are in good agreement with available experimental and theoretical results. A pressure induced structural phase transition from NaCl (B1) to HCP (A3) phases at 37.66 and 18.11GPa for AgBr and AgCl, respectively, and from NaCl to CsCl phase in AgBr and AgCl at 90.55 and 24.4GPa, respectively, is also predicted. Furthermore, the band structures are computed. Our results are compared to other theoretical and experimental works, and excellent agreement is obtained.en_US
dc.language.isoenen_US
dc.publisherUniversité de Bouiraen_US
dc.subjectFP-LMTOen_US
dc.subjectpropertiesen_US
dc.subjectstructural propertieselectronicen_US
dc.subjectAgClen_US
dc.subjectAgBren_US
dc.titleDensity functional study of the structural and phase transition of silver halides: LDA versus GGA calculationsen_US
dc.typeArticleen_US
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