Electronic transport properties of the Al0.5TiZrPdCuNi alloy in the high-entropy alloy and metallic glass forms
Artikel i vetenskaplig tidskrift, 2022

High-entropy alloys (HEAs) are characterized by a simultaneous presence of a crystal lattice and an amorphous-type chemical (substitutional) disorder. In order to unravel the effect of crystal-glass duality on the electronic transport properties of HEAs, we performed a comparative study of the electronic transport coefficients of a 6-component alloy Al0.5TiZrPdCuNi that can be prepared either as a HEA or as a metallic glass (MG) at the same chemical composition. The HEA and the MG states of the Al0.5TiZrPdCuNi alloy both show large, negative-temperature-coefficient resistivity, positive thermopower, positive Hall coefficient and small thermal conductivity. The transport coefficients were reproduced analytically by the spectral conductivity model, using the Kubo-Greenwood formalism. For both modifications of the material (HEA and MG), contribution of phonons to the transport coefficients was found small, so that their temperature dependence originates predominantly from the temperature dependence of the Fermi-Dirac function and the variation of the spectral conductivity and the related electronic density of states with energy within the Fermi-level region. The very similar electronic transport coefficients of the HEA and the MG states point towards essential role of the immense chemical disorder.

Författare

Magdalena Wencka

Institut Jožef Stefan

Polish Academy of Sciences

Mitja Krnel

Institut Jožef Stefan

A. Jelen

Institut Jožef Stefan

S. Vrtnik

Institut Jožef Stefan

J. Luzar

Institut Jožef Stefan

P. Koželj

Institut Jožef Stefan

Univerza V Ljubljani

Darja Gačnik

Institut Jožef Stefan

A. Meden

Univerza V Ljubljani

Q. Hu

Jiangxi Academy of Sciences

Chaomin Wang

Jiangxi Academy of Sciences

Sheng Guo

Chalmers, Industri- och materialvetenskap, Material och tillverkning

J. Dolinšek

Institut Jožef Stefan

Univerza V Ljubljani

Scientific Reports

2045-2322 (ISSN) 20452322 (eISSN)

Vol. 12 1 2271- 2271

Ämneskategorier

Oorganisk kemi

Materialkemi

Den kondenserade materiens fysik

DOI

10.1038/s41598-022-06133-7

PubMed

35145144

Mer information

Senast uppdaterat

2022-04-05