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Effect of in content on thermoelectric performance of InxGa1-xN alloys: Hybrid density functional theory study based on realistic models

dc.contributor.authorAroussi, H. C.
dc.contributor.authorMarana, N. L. [UNESP]
dc.contributor.authorHamdache, F.
dc.contributor.authorHouaria, R.
dc.contributor.authorBahlouli, S.
dc.contributor.authorCasassa, S.
dc.contributor.institutionUniv Sci & Technol Mohamed Boudiaf
dc.contributor.institutionUniv Torino
dc.contributor.institutionUniversidade Estadual Paulista (Unesp)
dc.contributor.institutionUniv Mustapha Stambouli Mascara
dc.date.accessioned2021-06-25T12:16:49Z
dc.date.available2021-06-25T12:16:49Z
dc.date.issued2021-07-01
dc.description.abstractIn this study, first-principles periodic calculations with localized Gaussian type orbitals within a hybrid density functional theory approach were performed to study the electronic, structural, thermodynamic, and transport properties of InxGa1-xN nitride alloys. The compositions were modeled in the range of 0.06 < x < 0.87 using a 32-atom supercell. According to previous studies, significant composition-dependent gap bowing occurs for both the lattice parameters and energy band gap. Our study of the thermodynamic stability indicated a notable trend toward spinodal decomposition. Infrared spectra are used as fingerprints to uniquely determine the composition and structure of alloys. Based on the transport properties calculated in the present study (Seebeck coefficient, power factor, and figure of merit), the ternary structure with approximate to 20% In is the optimal thermoelectric material and preliminary investigations confirmed that the transport properties can be altered by point defects.en
dc.description.affiliationUniv Sci & Technol Mohamed Boudiaf, Dept Phys, Lab LPPMCA, Oran, Algeria
dc.description.affiliationUniv Torino, Dipartimento Chim, Theoret Chem Grp, Turin, Italy
dc.description.affiliationSao Paulo State Univ, Modeling & Mol Simulat Grp, Bauru, SP, Brazil
dc.description.affiliationUniv Mustapha Stambouli Mascara, Mascara, Algeria
dc.description.affiliationUnespSao Paulo State Univ, Modeling & Mol Simulat Grp, Bauru, SP, Brazil
dc.description.sponsorshipAlgerian Government by the Exceptional National Program PNE
dc.description.sponsorshipAlgerian Ministry of Higher Education and Scientific Research
dc.description.sponsorshipFundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
dc.description.sponsorshipCINECA Supercomputing Center
dc.description.sponsorshipIdFAPESP: 2016/25500-4
dc.description.sponsorshipIdFAPESP: 2019/12430-6
dc.description.sponsorshipIdCINECA Supercomputing Center: HP10CP7ETO
dc.format.extent8
dc.identifierhttp://dx.doi.org/10.1016/j.jpcs.2021.110047
dc.identifier.citationJournal Of Physics And Chemistry Of Solids. Oxford: Pergamon-elsevier Science Ltd, v. 154, 8 p., 2021.
dc.identifier.doi10.1016/j.jpcs.2021.110047
dc.identifier.issn0022-3697
dc.identifier.urihttp://hdl.handle.net/11449/209395
dc.identifier.wosWOS:000652065700017
dc.language.isoeng
dc.publisherElsevier B.V.
dc.relation.ispartofJournal Of Physics And Chemistry Of Solids
dc.sourceWeb of Science
dc.titleEffect of in content on thermoelectric performance of InxGa1-xN alloys: Hybrid density functional theory study based on realistic modelsen
dc.typeArtigo
dcterms.licensehttp://www.elsevier.com/about/open-access/open-access-policies/article-posting-policy
dcterms.rightsHolderElsevier B.V.
dspace.entity.typePublication

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