Cristin-resultat-ID: 2001960
Sist endret: 24. januar 2023, 14:23
NVI-rapporteringsår: 2022
Resultat
Vitenskapelig artikkel
2022

High entropy alloy CrFeNiCoCu sputter deposited films: Structure, electrical properties, and oxidation

Bidragsytere:
  • Jeyanthinath Mayandi
  • Matthias Schrade
  • Vajeeston Ponniah
  • Marit Synnøve Sæverud Stange
  • Anna Maria Lind
  • Martin Fleissner Sunding
  • mfl.

Tidsskrift

Journal of Vacuum Science & Technology. A. Vacuum, Surfaces, and Films
ISSN 0734-2101
e-ISSN 1520-8559
NVI-nivå 1

Om resultatet

Vitenskapelig artikkel
Publiseringsår: 2022
Publisert online: 2022
Volum: 40
Artikkelnummer: 023402
Open Access

Importkilder

Scopus-ID: 2-s2.0-85123862976

Beskrivelse Beskrivelse

Tittel

High entropy alloy CrFeNiCoCu sputter deposited films: Structure, electrical properties, and oxidation

Sammendrag

High entropy alloy (HEA) films of CrFeCoNiCu were deposited by sputtering. Their structure was characterized and their electric transport properties were studied by temperature-dependent Hall and Seebeck measurements. The HEA films show a solid solution with an fcc structure. The residual electrical resistivity of the films is around 130 μΩ cm, which is higher than the Mott limit for a metal while the temperature dependence of the resistivity above 30 K is metal-like but with a small temperature coefficient of resistivity (2 ppm/K). The dominant scattering mechanism of charge carriers is alloy scattering due to chemical disorder in the HEA. The Hall coefficient is positive while the Seebeck coefficient is negative. This is interpreted as arising from an electronic structure where the Fermi level passes through band states having both holes and electrons as indicated by band structure calculations. Below 30 K, the conduction is discussed in terms of weak localization and Kondo effects. The HEA structure appears stable for annealing in vacuum, while annealing in an oxygen-containing atmosphere causes the surface to oxidize and grow a Cr-rich oxide on the surface. This is then accompanied by demixing of the HEA solid solution and a decrease in the effective resistance of the film.

Bidragsytere

Jeyanthinath Mayandi

  • Tilknyttet:
    Forfatter
    ved Fysisk institutt ved Universitetet i Oslo
  • Tilknyttet:
    Forfatter
    ved Madurai Kamaraj University

Matthias Schrade

  • Tilknyttet:
    Forfatter
    ved Fysisk institutt ved Universitetet i Oslo
  • Tilknyttet:
    Forfatter
    ved Bærekraftig energiteknologi ved SINTEF AS
Aktiv cristin-person

Vajeeston Ponniah

  • Tilknyttet:
    Forfatter
    ved Kjemisk institutt ved Universitetet i Oslo

Marit Synnøve Sæverud Stange

  • Tilknyttet:
    Forfatter
    ved Bærekraftig energiteknologi ved SINTEF AS

Anna Maria Lind

  • Tilknyttet:
    Forfatter
    ved Prosessteknologi ved SINTEF AS
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