Full metadata record
DC poleHodnotaJazyk
dc.contributor.authorDjelid, K.
dc.contributor.authorSeddik, T.
dc.contributor.authorMerabiha, O.
dc.contributor.authorBatouche, M.
dc.contributor.authorKhenata, R.
dc.contributor.authorBouhemadou, A.
dc.contributor.authorKhan, Saleem Ayaz
dc.contributor.authorBin Omran, S.
dc.date.accessioned2023-02-06T11:00:24Z-
dc.date.available2023-02-06T11:00:24Z-
dc.date.issued2022
dc.identifier.citationDJELID, K. SEDDIK, T. MERABIHA, O. BATOUCHE, M. KHENATA, R. BOUHEMADOU, A. KHAN, SA. BIN OMRAN, S. Effects of alloying chalcopyrite CuTlSe2 with Na on the electronic structure and thermoelectric coefficients: DFT investigation. European Physical Journal Plus, 2022, roč. 137, č. 12, s. nestránkováno. ISSN: 2190-5444cs
dc.identifier.issn2190-5444
dc.identifier.uri2-s2.0-85144110319
dc.identifier.urihttp://hdl.handle.net/11025/51343
dc.description.abstractthe chalcopyrite alloys Cu1–xNaxTlSe2, with x = 0.00, 0.25, and 0.50 were studied through density functional theory calculations. The Wu–Cohen generalized gradient and the Tran–Blaha modified Becke–Johnson approximations have been employed to describe the exchange–correlation potential. Energy band structure analysis reveals that CuTlSe2 is a semi-metal, while Cu0.25Na0.75TlSe2 and Cu0.50Na0.50TlSe2 alloys are semiconductors with gaps of approximately 0.17 eV and 0.35 eV, respectively. The total and partial densities of states were calculated and discussed. Examining the charge density, we point out the formation of the Na–Se ionic bond when Cu is replaced by the Na atom, which is responsible for the metal–semiconductor transition in the Cu1–xNaxTlSe2 alloys. Moreover, variations of the Seebeck coefficient, electrical conductivity, electronic and lattice thermal conductivity, power factor, and figure of merit of the Cu1–xNaxTlSe2 alloys with temperature and chemical potential were explored. The obtained results show that the value of the figure of merit increases when doping CuTlSe2 with sodium to reach 0.46 and 0.87 for p-type Cu0.75Na0.25TlSe2 and n-type Cu0.50Na0.50TlSe2, respectivelyde
dc.format10 s.cs
dc.format.mimetypeapplication/pdf
dc.language.isoenen
dc.publisherSpringeren
dc.relation.ispartofseriesEuropean Physical Journal Plusen
dc.rightsPlný text je přístupný v rámci univerzity přihlášeným uživatelům.cs
dc.rights© The Author(s), under exclusive licence to Springer Nature B.V.en
dc.subjecttepelná vodivostcs
dc.subjectskutteruditycs
dc.subjectdopravacs
dc.subjectteplocs
dc.titleEffects of alloying chalcopyrite CuTlSe2 with Na on the electronic structure and thermoelectric coefficients: DFT investigationen
dc.title.alternativeÚčinky legování chalkopyritu CuTlSe2 s Na na elektronovou strukturu a termoelektrické koeficienty: DFT výzkumcs
dc.typečlánekcs
dc.typearticleen
dc.rights.accessrestrictedAccessen
dc.type.versionpublishedVersionen
dc.description.abstract-translatedthe chalcopyrite alloys Cu1–xNaxTlSe2, with x = 0.00, 0.25, and 0.50 were studied through density functional theory calculations. The Wu–Cohen generalized gradient and the Tran–Blaha modified Becke–Johnson approximations have been employed to describe the exchange–correlation potential. Energy band structure analysis reveals that CuTlSe2 is a semi-metal, while Cu0.25Na0.75TlSe2 and Cu0.50Na0.50TlSe2 alloys are semiconductors with gaps of approximately 0.17 eV and 0.35 eV, respectively. The total and partial densities of states were calculated and discussed. Examining the charge density, we point out the formation of the Na–Se ionic bond when Cu is replaced by the Na atom, which is responsible for the metal–semiconductor transition in the Cu1–xNaxTlSe2 alloys. Moreover, variations of the Seebeck coefficient, electrical conductivity, electronic and lattice thermal conductivity, power factor, and figure of merit of the Cu1–xNaxTlSe2 alloys with temperature and chemical potential were explored. The obtained results show that the value of the figure of merit increases when doping CuTlSe2 with sodium to reach 0.46 and 0.87 for p-type Cu0.75Na0.25TlSe2 and n-type Cu0.50Na0.50TlSe2, respectivelyen
dc.subject.translatedthermal-conductivityen
dc.subject.translatedskutteruditesSen
dc.subject.translatedtransporten
dc.subject.translatedheaten
dc.identifier.doi10.1140/epjp/s13360-022-03577-8
dc.type.statusPeer-revieweden
dc.identifier.document-number899487800002
dc.identifier.obd43938452
dc.project.IDEF15_003/0000358/Výpočetní a experimentální design pokročilých materiálů s novými funkcionalitamics
Vyskytuje se v kolekcích:Články / Articles (RAM)
OBD

Soubory připojené k záznamu:
Soubor VelikostFormát 
KHAN_CuTlSe2.pdf2,81 MBAdobe PDFZobrazit/otevřít  Vyžádat kopii


Použijte tento identifikátor k citaci nebo jako odkaz na tento záznam: http://hdl.handle.net/11025/51343

Všechny záznamy v DSpace jsou chráněny autorskými právy, všechna práva vyhrazena.

hledání
navigace
  1. DSpace at University of West Bohemia
  2. Publikační činnost / Publications
  3. OBD