Single‐Phase L10‐Ordered High Entropy Thin Films with High Magnetic Anisotropy

Author:

Beeson Willie B.1ORCID,Bista Dinesh1ORCID,Zhang Huairuo23ORCID,Krylyuk Sergiy2ORCID,Davydov Albert V.2ORCID,Yin Gen1ORCID,Liu Kai1ORCID

Affiliation:

1. Physics Department Georgetown University Washington DC 20057 USA

2. Materials Science and Engineering Division National Institute of Standards and Technology Gaithersburg MD 20899 USA

3. Theiss Research, Inc. La Jolla CA 92037 USA

Abstract

AbstractThe vast high entropy alloy (HEA) composition space is promising for discovery of new material phases with unique properties. This study explores the potential to achieve rare‐earth‐free high magnetic anisotropy materials in single‐phase HEA thin films. Thin films of FeCoNiMnCu sputtered on thermally oxidized Si/SiO2 substrates at room temperature are magnetically soft, with a coercivity on the order of 10 Oe. After post‐deposition rapid thermal annealing (RTA), the films exhibit a single face‐centered‐cubic phase, with an almost 40‐fold increase in coercivity. Inclusion of 50 at.% Pt in the film leads to ordering of a single L10 high entropy intermetallic phase after RTA, along with high magnetic anisotropy and 3 orders of magnitude coercivity increase. These results demonstrate a promising HEA approach to achieve high magnetic anisotropy materials using RTA.

Funder

National Science Foundation

National Institute of Standards and Technology

Publisher

Wiley

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