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GGA and GGA + U Study of ThMn(2)Si(2) and ThMn(2)Ge(2) Compounds in a Body-Centered Tetragonal Ferromagnetic Phase

Our study used the full-potential linearized augmented plane waves (FP-LAPW) method to conduct a first-principles evaluation of the structural, electronic, and magnetic properties of ThMn(2)X(2) (X = Si and Ge) compounds. To establish theoretical dependability with the currently available experiment...

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Autores principales: Khan, Abdul Ahad, Zada, Zeshan, Reshak, Ali H., Ishaq, Muhammad, Zada, Sabeen, Saqib, Muhammad, Ismail, Muhammad, Fazal-ur-Rehman, Muhammad, Murtaza, Ghulam, Zada, Shafqat, Ramli, Muhammad M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9609203/
https://www.ncbi.nlm.nih.gov/pubmed/36296662
http://dx.doi.org/10.3390/molecules27207070
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author Khan, Abdul Ahad
Zada, Zeshan
Reshak, Ali H.
Ishaq, Muhammad
Zada, Sabeen
Saqib, Muhammad
Ismail, Muhammad
Fazal-ur-Rehman, Muhammad
Murtaza, Ghulam
Zada, Shafqat
Ramli, Muhammad M.
author_facet Khan, Abdul Ahad
Zada, Zeshan
Reshak, Ali H.
Ishaq, Muhammad
Zada, Sabeen
Saqib, Muhammad
Ismail, Muhammad
Fazal-ur-Rehman, Muhammad
Murtaza, Ghulam
Zada, Shafqat
Ramli, Muhammad M.
author_sort Khan, Abdul Ahad
collection PubMed
description Our study used the full-potential linearized augmented plane waves (FP-LAPW) method to conduct a first-principles evaluation of the structural, electronic, and magnetic properties of ThMn(2)X(2) (X = Si and Ge) compounds. To establish theoretical dependability with the currently available experimental results, computations for the structural findings of ternary intermetallic thorium (Th)-based compounds were achieved using the generalized gradient approximation in the scheme of Perdew–Burke–Ernzerhof (PBE–GGA) potential, while the generalized gradient approximation plus the Hubbard U (GGA + U) approach was employed to improve the electrical and magnetic properties. In contrast with both the paramagnetic (PM) and antiferromagnetic (AFM) phases, the ThMn(2)X(2) compounds were optimized in a stable ferromagnetic (FM) phase, which was more suited for studying and analyzing magnetic properties. The electronic band structures (BS) and the density of state (DOS) were computed using the two PBE–GGA and GGA + U approximations. The thorium (Th)-based ThMn(2)X(2) compound has full metallic character, due to the crossing and overlapping of bands across the Fermi level of energy, as well as the absence of a gap through both spin (up and down) channels. There was a significant hybridization between (Mn-d and (X = Si and Ge)-p states of conduction band with Th-f states in the valence band. The total magnetic moment of ThMn(2)Si(2) in the ferromagnetic phase was 7.94534 μB, while for ThMn(2)Ge(2) it was 8.73824 μB with a major contribution from the Mn atom. In addition, the ThMn(2)Ge(2) compound’s total magnetic moment confirmed that it exhibits higher ferromagnetism than does the ThMn(2)Si(2) compound.
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spelling pubmed-96092032022-10-28 GGA and GGA + U Study of ThMn(2)Si(2) and ThMn(2)Ge(2) Compounds in a Body-Centered Tetragonal Ferromagnetic Phase Khan, Abdul Ahad Zada, Zeshan Reshak, Ali H. Ishaq, Muhammad Zada, Sabeen Saqib, Muhammad Ismail, Muhammad Fazal-ur-Rehman, Muhammad Murtaza, Ghulam Zada, Shafqat Ramli, Muhammad M. Molecules Article Our study used the full-potential linearized augmented plane waves (FP-LAPW) method to conduct a first-principles evaluation of the structural, electronic, and magnetic properties of ThMn(2)X(2) (X = Si and Ge) compounds. To establish theoretical dependability with the currently available experimental results, computations for the structural findings of ternary intermetallic thorium (Th)-based compounds were achieved using the generalized gradient approximation in the scheme of Perdew–Burke–Ernzerhof (PBE–GGA) potential, while the generalized gradient approximation plus the Hubbard U (GGA + U) approach was employed to improve the electrical and magnetic properties. In contrast with both the paramagnetic (PM) and antiferromagnetic (AFM) phases, the ThMn(2)X(2) compounds were optimized in a stable ferromagnetic (FM) phase, which was more suited for studying and analyzing magnetic properties. The electronic band structures (BS) and the density of state (DOS) were computed using the two PBE–GGA and GGA + U approximations. The thorium (Th)-based ThMn(2)X(2) compound has full metallic character, due to the crossing and overlapping of bands across the Fermi level of energy, as well as the absence of a gap through both spin (up and down) channels. There was a significant hybridization between (Mn-d and (X = Si and Ge)-p states of conduction band with Th-f states in the valence band. The total magnetic moment of ThMn(2)Si(2) in the ferromagnetic phase was 7.94534 μB, while for ThMn(2)Ge(2) it was 8.73824 μB with a major contribution from the Mn atom. In addition, the ThMn(2)Ge(2) compound’s total magnetic moment confirmed that it exhibits higher ferromagnetism than does the ThMn(2)Si(2) compound. MDPI 2022-10-20 /pmc/articles/PMC9609203/ /pubmed/36296662 http://dx.doi.org/10.3390/molecules27207070 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Khan, Abdul Ahad
Zada, Zeshan
Reshak, Ali H.
Ishaq, Muhammad
Zada, Sabeen
Saqib, Muhammad
Ismail, Muhammad
Fazal-ur-Rehman, Muhammad
Murtaza, Ghulam
Zada, Shafqat
Ramli, Muhammad M.
GGA and GGA + U Study of ThMn(2)Si(2) and ThMn(2)Ge(2) Compounds in a Body-Centered Tetragonal Ferromagnetic Phase
title GGA and GGA + U Study of ThMn(2)Si(2) and ThMn(2)Ge(2) Compounds in a Body-Centered Tetragonal Ferromagnetic Phase
title_full GGA and GGA + U Study of ThMn(2)Si(2) and ThMn(2)Ge(2) Compounds in a Body-Centered Tetragonal Ferromagnetic Phase
title_fullStr GGA and GGA + U Study of ThMn(2)Si(2) and ThMn(2)Ge(2) Compounds in a Body-Centered Tetragonal Ferromagnetic Phase
title_full_unstemmed GGA and GGA + U Study of ThMn(2)Si(2) and ThMn(2)Ge(2) Compounds in a Body-Centered Tetragonal Ferromagnetic Phase
title_short GGA and GGA + U Study of ThMn(2)Si(2) and ThMn(2)Ge(2) Compounds in a Body-Centered Tetragonal Ferromagnetic Phase
title_sort gga and gga + u study of thmn(2)si(2) and thmn(2)ge(2) compounds in a body-centered tetragonal ferromagnetic phase
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9609203/
https://www.ncbi.nlm.nih.gov/pubmed/36296662
http://dx.doi.org/10.3390/molecules27207070
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