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Intrinsic half-metallicity in two-dimensional Cr(2)TeX(2) (X = I, Br, Cl) monolayers

Two-dimensional (2D) materials with intrinsic half-metallicity at or above room temperature are important in spin nanodevices. Nevertheless, such 2D materials in experiment are still rarely realized. In this work, a new family of 2D Cr(2)TeX(2) (X = I, Br, Cl) monolayers has been predicted using fir...

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Detalles Bibliográficos
Autores principales: Zhang, Jun, He, Zixin, Gao, Chuchu, Tao, Yanyan, Liang, Feng, Li, Guannan, Gao, Benling, Song, Guang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10562977/
https://www.ncbi.nlm.nih.gov/pubmed/37822665
http://dx.doi.org/10.1039/d3ra05780a
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author Zhang, Jun
He, Zixin
Gao, Chuchu
Tao, Yanyan
Liang, Feng
Li, Guannan
Gao, Benling
Song, Guang
author_facet Zhang, Jun
He, Zixin
Gao, Chuchu
Tao, Yanyan
Liang, Feng
Li, Guannan
Gao, Benling
Song, Guang
author_sort Zhang, Jun
collection PubMed
description Two-dimensional (2D) materials with intrinsic half-metallicity at or above room temperature are important in spin nanodevices. Nevertheless, such 2D materials in experiment are still rarely realized. In this work, a new family of 2D Cr(2)TeX(2) (X = I, Br, Cl) monolayers has been predicted using first-principles calculations. The monolayer is made of five atomic sublayers with ABCAB-type stacking along the perpendicular direction. It is found that the energies for all the ferromagnetic (FM) half-metallic states are the lowest. The phonon spectrum calculations and molecular dynamics simulations both demonstrate that the FM states are stable, indicating the possibility of experimentally obtaining the 2D Cr(2)TeX(2) monolayers with half-metallicity. The Curie temperatures from Monte Carlo simulations are 486, 445, and 451 K for Cr(2)TeI(2), Cr(2)TeBr(2), and Cr(2)TeCl(2) monolayers, respectively, and their half-metallic bandgaps are 1.72, 1.86 and 1.90 eV. The corresponding magnetocrystalline anisotropy energies (MAEs) are about 1185, 502, 899 μeV per Cr atom for Cr(2)TeX(2) monolayers, in which the easy axes are along the plane for the Cr(2)TeBr(2) and Cr(2)TeCl(2) monolayers, but being out of the plane in the Cr(2)TeI(2). Our study implies the potential application of the 2D Cr(2)TeX(2) (X = I, Br, Cl) monolayers in spin nanodevices.
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spelling pubmed-105629772023-10-11 Intrinsic half-metallicity in two-dimensional Cr(2)TeX(2) (X = I, Br, Cl) monolayers Zhang, Jun He, Zixin Gao, Chuchu Tao, Yanyan Liang, Feng Li, Guannan Gao, Benling Song, Guang RSC Adv Chemistry Two-dimensional (2D) materials with intrinsic half-metallicity at or above room temperature are important in spin nanodevices. Nevertheless, such 2D materials in experiment are still rarely realized. In this work, a new family of 2D Cr(2)TeX(2) (X = I, Br, Cl) monolayers has been predicted using first-principles calculations. The monolayer is made of five atomic sublayers with ABCAB-type stacking along the perpendicular direction. It is found that the energies for all the ferromagnetic (FM) half-metallic states are the lowest. The phonon spectrum calculations and molecular dynamics simulations both demonstrate that the FM states are stable, indicating the possibility of experimentally obtaining the 2D Cr(2)TeX(2) monolayers with half-metallicity. The Curie temperatures from Monte Carlo simulations are 486, 445, and 451 K for Cr(2)TeI(2), Cr(2)TeBr(2), and Cr(2)TeCl(2) monolayers, respectively, and their half-metallic bandgaps are 1.72, 1.86 and 1.90 eV. The corresponding magnetocrystalline anisotropy energies (MAEs) are about 1185, 502, 899 μeV per Cr atom for Cr(2)TeX(2) monolayers, in which the easy axes are along the plane for the Cr(2)TeBr(2) and Cr(2)TeCl(2) monolayers, but being out of the plane in the Cr(2)TeI(2). Our study implies the potential application of the 2D Cr(2)TeX(2) (X = I, Br, Cl) monolayers in spin nanodevices. The Royal Society of Chemistry 2023-10-10 /pmc/articles/PMC10562977/ /pubmed/37822665 http://dx.doi.org/10.1039/d3ra05780a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhang, Jun
He, Zixin
Gao, Chuchu
Tao, Yanyan
Liang, Feng
Li, Guannan
Gao, Benling
Song, Guang
Intrinsic half-metallicity in two-dimensional Cr(2)TeX(2) (X = I, Br, Cl) monolayers
title Intrinsic half-metallicity in two-dimensional Cr(2)TeX(2) (X = I, Br, Cl) monolayers
title_full Intrinsic half-metallicity in two-dimensional Cr(2)TeX(2) (X = I, Br, Cl) monolayers
title_fullStr Intrinsic half-metallicity in two-dimensional Cr(2)TeX(2) (X = I, Br, Cl) monolayers
title_full_unstemmed Intrinsic half-metallicity in two-dimensional Cr(2)TeX(2) (X = I, Br, Cl) monolayers
title_short Intrinsic half-metallicity in two-dimensional Cr(2)TeX(2) (X = I, Br, Cl) monolayers
title_sort intrinsic half-metallicity in two-dimensional cr(2)tex(2) (x = i, br, cl) monolayers
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10562977/
https://www.ncbi.nlm.nih.gov/pubmed/37822665
http://dx.doi.org/10.1039/d3ra05780a
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