Published May 10, 2024
| Version v1
Publication
Effect of mixing the low-valence transition metal atoms Y = Co, Fe, Mn, Cr, V, Ti, or Sc on the properties of quaternary Heusler compounds Co2-xYx FeSi (0≤x≤1)
Description
In this paper we report an experimental study of structural, magnetic, and mechanical properties of quaternary
Heusler alloys Co2−x Yx FeSi (Y = Co, Fe, Mn, Cr, V, Ti, or Sc, 0 x 1) and the experimental findings
are supported by ab initio electronic structure calculations. The alloys were synthesized using an arc-melting
technique. Single phase microstructures are observed for all alloys substituted with low-valence transition
metals Y except Sc. X-ray powder diffraction patterns at room temperature show the presence of Heusler-like
face-centered cubic crystal structure in all single phase specimens. The low-temperature saturation magnetic
moments, as determined from magnetization measurements, agree fairly well with our theoretical results and
also follow the Slater-Pauling rule of thumb for half-metals, a prerequisite for half-metallicity. The alloys are
predicted to exhibit half-metallic ferromagnetism by ab initio electronic structure calculations using the GGA+U
approach. All stable compounds are observed to have high Curie temperatures with linear dependence with the
valence electrons concentration in the alloys. Relatively high hardness values are also measured, approaching
15.7 GPa for Ti-substituted material, highest among the values reported for Heuslers so far. All these properties
strongly suggest the alloys are promising for the spintronic applications at room temperature and above.
Abstract
Division of Materials Research (DMR) de la National Science Foundation (NSF) de los Estados Unidos - NSF DMR 1235396 y NSF DMR 1508680Additional details
Identifiers
- URL
- https://idus.us.es/handle//11441/158038
- URN
- urn:oai:idus.us.es:11441/158038
Origin repository
- Origin repository
- USE