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Ab initio investigations of the structure-stability, mechanical, electronic, thermodynamic and optical properties of Ti2FeAs Heusler alloy.
Kumari, Anjali; Mishra, Abhishek Kumar; Sharma, Ramesh; Al-Qaisi, Samah; Moayad, A J A; Alshomrany, Ali S; Sfina, N; Dar, Sajad Ahmed; Srivastava, Vipul.
Afiliação
  • Kumari A; Department of Physics, Applied Science Cluster, University of Petroleum and Energy Studies Bidholi via Premnagar Dehradun Uttrakhand 248007 India.
  • Mishra AK; Department of Physics, Applied Science Cluster, University of Petroleum and Energy Studies Bidholi via Premnagar Dehradun Uttrakhand 248007 India.
  • Sharma R; Department of Applied Science, Feroze Gandhi Institute of Engineering and Technology Raebareli 229001 Uttar Pradesh India.
  • Al-Qaisi S; Palestinian Ministry of Education and Higher Education Nablus Palestine.
  • Moayad AJA; Department of Material Science, Malawi University of Science and Technology Limbe Malawi mailme_moya123@gmail.com.
  • Alshomrany AS; Department of Physics, College of Sciences, Umm Al-Qura University Al Taif HWY Mecca 24381 Saudi Arabia.
  • Sfina N; College of Sciences and Arts in Mahayel Asir, Department of Physics, King Khalid University Abha Saudi Arabia.
  • Dar SA; Department of Physics, Govt. Motilal Vigyan Mahavidyalaya College Bhopal Madhya Pradesh India.
  • Srivastava V; Department of Physics, School of Chemical Engineering & Physical Sciences, Lovely Professional University Delhi-Jalandhar Highway Phagwara-144411 Punjab India vipsri27@gmail.com.
RSC Adv ; 14(10): 6762-6775, 2024 Feb 21.
Article em En | MEDLINE | ID: mdl-38405071
ABSTRACT
In this study, we employed density functional theory coupled with the full-potential linearized augmented plane-wave method (FP-LAPW) to investigate the structural, electronic, and magnetic properties of the Ti2FeAs alloy adopting the Hg2CuTi-type structure. Our findings demonstrate that all the examined structures exhibit ferromagnetic (FM) behaviour. By conducting electronic band structure calculations, we observed an energy gap of 0.739 eV for Ti2FeAs in the spin-down state and metallic intersections at the Fermi level in the spin-up state. These results suggest the half-metallic (HM) nature of Ti2FeAs, where the Ti-d and Fe-d electronic states play a significant role near the Fermi level. Additionally, the obtained total magnetic moments are consistent with the Slater-Pauling rule (Mtot = Ztot - 18), indicating 100% spin polarization for these compounds. To explore their optical properties, we employed the dielectric function to compute various optical parameters, including absorption spectra, energy-loss spectra, refractive index, reflectivity, and conductivity. Furthermore, various thermodynamic parameters were evaluated at different temperatures and pressures. The results obtained from the elastic parameters reveal the anisotropic and ductile nature of the Ti2FeAs compound. These findings suggest that Ti2FeAs has potential applications in temperature-tolerant devices and optoelectronic devices as a UV absorber.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article