Investigation of Electromagnetic Shielding Performance of Monolayer Ironboride in Tetragonal Crystal Structure using Ab initio Methods

The negative effects of pollution caused by electromagnetic radiation on human health and sensitive systems have reached serious dimensions. The most effective way to deal with this pollution is to create isolated areas with shielding materials. Especially after the discovery of graphene, studies on...

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Main Authors: İzzet Paruğ Duru, Hakan Üşenti
Format: Article
Language:English
Published: Düzce University 2025-04-01
Series:Düzce Üniversitesi Bilim ve Teknoloji Dergisi
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Online Access:https://dergipark.org.tr/tr/download/article-file/4514404
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author İzzet Paruğ Duru
Hakan Üşenti
author_facet İzzet Paruğ Duru
Hakan Üşenti
author_sort İzzet Paruğ Duru
collection DOAJ
description The negative effects of pollution caused by electromagnetic radiation on human health and sensitive systems have reached serious dimensions. The most effective way to deal with this pollution is to create isolated areas with shielding materials. Especially after the discovery of graphene, studies on 2D materials continue to reveal the extraordinary structural, electronic and optical properties of 2D materials. Thanks to the research on the use of monolayer materials in electromagnetic shielding, ultra-thin and high-performance shielding materials are being obtained. In this study, the electromagnetic radiation shielding efficiency (SE) of a 2D film-structured material with a tetragonal crystal structure in the MBene class of the MXene family and obtained using Fe2B unit cells in the P4/mmm space group has been investigated using ab-initio methods. The electrical, optic and magnetic behavior of the material in the ground state is determined using the density functional theory (DFT) approach. The Curie temperature was investigated using the Monte Carlo method. The shielding efficiency of Fe2B has been investigated in the range of 31.558-123980 nm of the electromagnetic wave spectrum at [001], [010], [100] polarization states. Despite Fe2B 2D monolayer film structure, it showed a shielding performance (SET) of gt;20 dB. This study shows that Fe2B in film structure is a promising and exciting material for ultra-thin shielding material applications with its superior shielding performance at nanometer dimensions.
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institution Kabale University
issn 2148-2446
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series Düzce Üniversitesi Bilim ve Teknoloji Dergisi
spelling doaj-art-e854c94784cc482e96e5b51a698d613f2025-08-20T03:53:52ZengDüzce UniversityDüzce Üniversitesi Bilim ve Teknoloji Dergisi2148-24462025-04-0113289391210.29130/dubited.161832797Investigation of Electromagnetic Shielding Performance of Monolayer Ironboride in Tetragonal Crystal Structure using Ab initio Methodsİzzet Paruğ Duru0Hakan Üşenti1https://orcid.org/0009-0002-9352-8578GEDİK ÜNİVERSİTESİ, GEDİK MESLEK YÜKSEKOKULUDUZCE UNIVERSITY, VOCATIONAL SCHOOLThe negative effects of pollution caused by electromagnetic radiation on human health and sensitive systems have reached serious dimensions. The most effective way to deal with this pollution is to create isolated areas with shielding materials. Especially after the discovery of graphene, studies on 2D materials continue to reveal the extraordinary structural, electronic and optical properties of 2D materials. Thanks to the research on the use of monolayer materials in electromagnetic shielding, ultra-thin and high-performance shielding materials are being obtained. In this study, the electromagnetic radiation shielding efficiency (SE) of a 2D film-structured material with a tetragonal crystal structure in the MBene class of the MXene family and obtained using Fe2B unit cells in the P4/mmm space group has been investigated using ab-initio methods. The electrical, optic and magnetic behavior of the material in the ground state is determined using the density functional theory (DFT) approach. The Curie temperature was investigated using the Monte Carlo method. The shielding efficiency of Fe2B has been investigated in the range of 31.558-123980 nm of the electromagnetic wave spectrum at [001], [010], [100] polarization states. Despite Fe2B 2D monolayer film structure, it showed a shielding performance (SET) of gt;20 dB. This study shows that Fe2B in film structure is a promising and exciting material for ultra-thin shielding material applications with its superior shielding performance at nanometer dimensions.https://dergipark.org.tr/tr/download/article-file/4514404ab-initiodftkalkanlama etkisimbenesfexbyab-initiodftshielding effectmbenesfexby
spellingShingle İzzet Paruğ Duru
Hakan Üşenti
Investigation of Electromagnetic Shielding Performance of Monolayer Ironboride in Tetragonal Crystal Structure using Ab initio Methods
Düzce Üniversitesi Bilim ve Teknoloji Dergisi
ab-initio
dft
kalkanlama etkisi
mbenes
fexby
ab-initio
dft
shielding effect
mbenes
fexby
title Investigation of Electromagnetic Shielding Performance of Monolayer Ironboride in Tetragonal Crystal Structure using Ab initio Methods
title_full Investigation of Electromagnetic Shielding Performance of Monolayer Ironboride in Tetragonal Crystal Structure using Ab initio Methods
title_fullStr Investigation of Electromagnetic Shielding Performance of Monolayer Ironboride in Tetragonal Crystal Structure using Ab initio Methods
title_full_unstemmed Investigation of Electromagnetic Shielding Performance of Monolayer Ironboride in Tetragonal Crystal Structure using Ab initio Methods
title_short Investigation of Electromagnetic Shielding Performance of Monolayer Ironboride in Tetragonal Crystal Structure using Ab initio Methods
title_sort investigation of electromagnetic shielding performance of monolayer ironboride in tetragonal crystal structure using ab initio methods
topic ab-initio
dft
kalkanlama etkisi
mbenes
fexby
ab-initio
dft
shielding effect
mbenes
fexby
url https://dergipark.org.tr/tr/download/article-file/4514404
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AT hakanusenti investigationofelectromagneticshieldingperformanceofmonolayerironborideintetragonalcrystalstructureusingabinitiomethods