Structural, Electronic, Magnetic, and Elastic Properties of CoX′CrZ (X′ = Sc, Ti; Z = Al, Ga) Quaternary Heusler Alloys: First‐Principles Study
Author:
Affiliation:
1. College of Science Hohai University Nanjing 210024 China
2. Key Laboratory of Ministry of Education for Coastal Disaster and Protection Hohai University Nanjing 210024 China
Funder
Fundamental Research Funds for the Central Universities
National Natural Science Foundation of China
Publisher
Wiley
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/pssb.202100004
Reference74 articles.
1. New Class of Materials: Half-Metallic Ferromagnets
2. First-principles study of four quaternary Heusler alloys ZrMnVZ and ZrCoFeZ (Z = Si, Ge)
3. First-principles study of new quaternary Heusler compounds without 3d transition metal elements: ZrRhHfZ (Z = Al, Ga, In)
4. Bulk and surface DFT investigations of the electronic and magnetic properties of CsXNO (X = Mg, Ca and Sr) quaternary Heusler alloys
5. Search for half-metallic magnets with large half-metallic gaps in the quaternary Heusler alloys CoFeTiZ and CoFeVZ (Z=Al, Ga, Si, Ge, As, Sb)
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1. Physical properties of CoX'ZrGa (X' = V, Cr) quaternary-Heuslers: A first-principles investigation;Physica B: Condensed Matter;2024-07
2. Comprehensive computational study of phase stability, half metallicity, elastic and thermal properties of Fe based quaternary Heusler alloys for spintronics applications;Indian Journal of Physics;2023-02-23
3. Revealing the electronic, optical, elastic, mechanical, anisotropic, and thermoelectric responses of Sc 2 NiZ ( Z = Si , Ge , and Sn ) Heusler alloys via DFT calculations;International Journal of Quantum Chemistry;2022-10-28
4. Electronic structure and magnetic properties of YX′CrZ (X′ = Fe, Co, Ni; Z = Al,Ga, In) quaternary Heusler alloys;Indian Journal of Physics;2022-08-22
5. Computational study of phase stability, electronic, magnetic and thermoelectric properties of a new quaternary Heusler alloy CrCoIrGa;Solid State Communications;2022-02
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