Theoretical Study of the Electronic Properties of X2YZ (X = Fe, Co; Y = Zr, Mo; Z = Ge, Sb) Ternary Heusler: Abinitio Study

In the purpose of exploring new Heusler alloys with different magnetic applications, we have employed first principles calculations method within density functional theory. After checking the structural stability of X2YZ Heusler alloys (X = Fe, Co; Y =Zr, Mo and Z = Ge, Sb), we found that Cu2MnAl ty...

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Main Authors: Maafa A., Rozale H., Oughilas A., Boubaça A., Amar A., Lucache D.
Format: Article
Language:English
Published: Sciendo 2020-12-01
Series:Annals of West University of Timisoara: Physics
Subjects:
Online Access:https://doi.org/10.2478/awutp-2020-0001
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spelling doaj-23f62852269b405ea586c306eccbd8b52021-09-06T19:41:29ZengSciendoAnnals of West University of Timisoara: Physics1224-97182020-12-0162111410.2478/awutp-2020-0001awutp-2020-0001Theoretical Study of the Electronic Properties of X2YZ (X = Fe, Co; Y = Zr, Mo; Z = Ge, Sb) Ternary Heusler: Abinitio StudyMaafa A.0Rozale H.1Oughilas A.2Boubaça A.3Amar A.4Lucache D.5Condensed Matter and sustainable development Laboratory (LMCDD), University of Sidi Bel-Abbes, Sidi Bel-Abbes22000, Algeria.Condensed Matter and sustainable development Laboratory (LMCDD), University of Sidi Bel-Abbes, Sidi Bel-Abbes22000, Algeria.Condensed Matter and sustainable development Laboratory (LMCDD), University of Sidi Bel-Abbes, Sidi Bel-Abbes22000, Algeria.Condensed Matter and sustainable development Laboratory (LMCDD), University of Sidi Bel-Abbes, Sidi Bel-Abbes22000, Algeria.Condensed Matter and sustainable development Laboratory (LMCDD), University of Sidi Bel-Abbes, Sidi Bel-Abbes22000, Algeria.Faculty of Electrical Engineering, “Gh.Asachi” Technical University Iasi, RomaniaIn the purpose of exploring new Heusler alloys with different magnetic applications, we have employed first principles calculations method within density functional theory. After checking the structural stability of X2YZ Heusler alloys (X = Fe, Co; Y =Zr, Mo and Z = Ge, Sb), we found that Cu2MnAl type structure is more favorable for most compounds except for X2MoGe and Co2MoSb, were the Hg2CuTi structure is energetically more stable. The trends in magnetic and electronic structures can be predicted by the structure types as well as the different kinds of hybridizations between the constituents. Among the two series only two compounds were identified to be true half metals with potential applications in spintronic devices. While one compound was classified as a nonmagnetic semiconductor with a small band gap. For the rest of materials, we found that the metallic behavior is dominant. These materials show possible interesting features in technical applications as well. The effect of distortion on the magnetic properties of Co2ZrGe and Fe2ZrSb showed that the half metallic character was preserved within a moderate range of volume changes, which makes it possible to grow these materials as thin films with modern techniques.https://doi.org/10.2478/awutp-2020-0001heusler alloys3d and 4d elementselectronic propertieshalf metallic zonemagnetic properties
collection DOAJ
language English
format Article
sources DOAJ
author Maafa A.
Rozale H.
Oughilas A.
Boubaça A.
Amar A.
Lucache D.
spellingShingle Maafa A.
Rozale H.
Oughilas A.
Boubaça A.
Amar A.
Lucache D.
Theoretical Study of the Electronic Properties of X2YZ (X = Fe, Co; Y = Zr, Mo; Z = Ge, Sb) Ternary Heusler: Abinitio Study
Annals of West University of Timisoara: Physics
heusler alloys
3d and 4d elements
electronic properties
half metallic zone
magnetic properties
author_facet Maafa A.
Rozale H.
Oughilas A.
Boubaça A.
Amar A.
Lucache D.
author_sort Maafa A.
title Theoretical Study of the Electronic Properties of X2YZ (X = Fe, Co; Y = Zr, Mo; Z = Ge, Sb) Ternary Heusler: Abinitio Study
title_short Theoretical Study of the Electronic Properties of X2YZ (X = Fe, Co; Y = Zr, Mo; Z = Ge, Sb) Ternary Heusler: Abinitio Study
title_full Theoretical Study of the Electronic Properties of X2YZ (X = Fe, Co; Y = Zr, Mo; Z = Ge, Sb) Ternary Heusler: Abinitio Study
title_fullStr Theoretical Study of the Electronic Properties of X2YZ (X = Fe, Co; Y = Zr, Mo; Z = Ge, Sb) Ternary Heusler: Abinitio Study
title_full_unstemmed Theoretical Study of the Electronic Properties of X2YZ (X = Fe, Co; Y = Zr, Mo; Z = Ge, Sb) Ternary Heusler: Abinitio Study
title_sort theoretical study of the electronic properties of x2yz (x = fe, co; y = zr, mo; z = ge, sb) ternary heusler: abinitio study
publisher Sciendo
series Annals of West University of Timisoara: Physics
issn 1224-9718
publishDate 2020-12-01
description In the purpose of exploring new Heusler alloys with different magnetic applications, we have employed first principles calculations method within density functional theory. After checking the structural stability of X2YZ Heusler alloys (X = Fe, Co; Y =Zr, Mo and Z = Ge, Sb), we found that Cu2MnAl type structure is more favorable for most compounds except for X2MoGe and Co2MoSb, were the Hg2CuTi structure is energetically more stable. The trends in magnetic and electronic structures can be predicted by the structure types as well as the different kinds of hybridizations between the constituents. Among the two series only two compounds were identified to be true half metals with potential applications in spintronic devices. While one compound was classified as a nonmagnetic semiconductor with a small band gap. For the rest of materials, we found that the metallic behavior is dominant. These materials show possible interesting features in technical applications as well. The effect of distortion on the magnetic properties of Co2ZrGe and Fe2ZrSb showed that the half metallic character was preserved within a moderate range of volume changes, which makes it possible to grow these materials as thin films with modern techniques.
topic heusler alloys
3d and 4d elements
electronic properties
half metallic zone
magnetic properties
url https://doi.org/10.2478/awutp-2020-0001
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