Publication detail

Stoichiometric and off-stoichiometric full Hensler Fe2V1-xWxAl thermoelectric systems

Hinterleitner, B. Fuchs, P. Rehak, J. Garmroudi, F. Parzer, M. Waas, M. Svagera, R. Steiner, S. Kishimoto, M. Moser, R. Podloucky, R. Bauer, E.

Original Title

Stoichiometric and off-stoichiometric full Hensler Fe2V1-xWxAl thermoelectric systems

Type

journal article in Web of Science

Language

English

Original Abstract

A series of full Heusler alloys, Fe2V1-xWxAl, 0 <= x <= 0.2, was prepared and characterized, and relevant physical properties to account for the thermoelectric performance were studied in a wide temperature range. Additionally, off-stoichiometric samples with similar compositions have been included, and a 10% improvement of the thermoelectric figure of merit was obtained. The V/W substitution causes (i) a change of the main carrier type, from holes to electrons as evidenced from Seebeck and Hall measurements, and (ii) a substantial reduction of the lattice thermal conductivity due to a creation of lattice disorder by means of a distinct different mass and metallic radius upon the V/W substitution. Moreover ZT values above 0.2 have been obtained. A microscopic understanding of the experimental data observed is revealed from ab initio calculations of the electronic and phononic structure. This series of alloys constitutes the basis for thin film systems, which have recently been found to exhibit ZT values beyond those reported so far in the literature.

Keywords

LATTICE THERMAL-CONDUCTIVITY; TOTAL-ENERGY CALCULATIONS; FE2VAL; SEMICONDUCTOR; TEMPERATURE; ALLOYS

Authors

Hinterleitner, B.; Fuchs, P.; Rehak, J.; Garmroudi, F.; Parzer, M.; Waas, M.; Svagera, R.; Steiner, S.; Kishimoto, M.; Moser, R.; Podloucky, R.; Bauer, E.

Released

13. 8. 2020

Publisher

AMER PHYSICAL SOC

Location

COLLEGE PK

ISBN

2469-9969

Periodical

PHYSICAL REVIEW B

Year of study

102

Number

7

State

United States of America

Pages from

075117-1

Pages to

075117-11

Pages count

11

URL