首页 | 本学科首页   官方微博 | 高级检索  
     


Half-metallicity,magnetism, mechanical,thermal, and phonon properties of FeCrTe and FeCrSe half-Heusler alloys under pressure
Authors:Ramesh Paudel  Gopi Chandra Kaphle  Mohammed Batouche  Jingchuan Zhu
Affiliation:1. Nepal Academy of Science and Technology (NAST), Khumaltar, Lalitpur, Nepal;2. Central Department of Physics, Tribhuvan University, Kirtipur, Kathmandu, Nepal

Contribution: Methodology, Writing - review & editing;3. Laboratoire de Physique Quantique et de Modélisation Mathématique, Université de Mascara, Mascara, Algeria

Contribution: ​Investigation;4. School of Materials Science and Engineering, Harbin Institute of Technology, Harbin, China

Abstract:The half-metallicity of Heusler alloys is quite sensitive to high pressure and disorder. To understand this phenomenon better, we systematically studied the half-metallic nature, magnetism, phonon, and thermomechanical properties of FeCrTe and FeCrSe Heusler alloys under high pressure using ab initio calculations based on density functional theory. The ground-state lattice constants for FeCrTe and FeCrSe alloys are 5.93 and 5.57 Å, respectively, consistent with available theoretical results. Formation energy, cohesive energy, elastic constants, and phonon dispersion confirmed that both compounds are thermodynamically and mechanically stable. The FeCrTe and FeCrSe alloys showed a half-metallic character with a band gap of 0.68 and 0.58 eV at 0 GPa pressure, respectively, and magnetic moments of 2.01 μB for both alloys, using generalized gradient approximation (GGA) approximation. FeCrTe alloy changes from metallic to half-metallic above 30 GPa pressure using GGA + U. The elastic properties were scrutinized, and it was found that, at 0 GPa pressure, FeCrTe is ductile, and FeCrSe is brittle. Under pressure, FeCrSe becomes brittle above 10 GPa pressure. Average sound velocity Vm, Debye temperature ƟD, and heat capacity CV were predicted under pressure. These outcomes will improve the integration of Fe-based half-Heusler alloys in spintronic devices.
Keywords:ab initio  half-metallicity  magnetism  mechanical behavior  spintronic
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号