First Principle Study of Structural, Electronic, Optical, and Thermodynamic Properties of Scandium-Doped Zirconia Zr1−xScxO2,x=0.125

The effect of scandium doping on the structural, electronic, optical, and thermodynamic properties of scandium-doped zirconia (Zr0.875Sc0.125 O1.9375) was investigated by first-principles calculations. The results of electronic property calculation show that the incorporation of scandium (Sc3+) in Z...

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Main Authors: Lemessa Asefa Eressa, Zeleke Deressa Gerbi
Format: Article
Language:English
Published: Wiley 2024-01-01
Series:Advances in Condensed Matter Physics
Online Access:http://dx.doi.org/10.1155/2024/9607696
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author Lemessa Asefa Eressa
Zeleke Deressa Gerbi
author_facet Lemessa Asefa Eressa
Zeleke Deressa Gerbi
author_sort Lemessa Asefa Eressa
collection DOAJ
description The effect of scandium doping on the structural, electronic, optical, and thermodynamic properties of scandium-doped zirconia (Zr0.875Sc0.125 O1.9375) was investigated by first-principles calculations. The results of electronic property calculation show that the incorporation of scandium (Sc3+) in ZrO2 has reduced its bandgap due to the formation of scandium 3d states in the conduction band. The analysis of optical properties shows that scandium doping in ZrO2 improves the real ε1 and imaginary dielectric functions ε2, extinction coefficient (k), refractive index (n), reflectivity (R), and absorption coefficient (α) properties thereby enhancing its photocatalytic and optical activities. The heat capacities of ZrO2 and Sc-ZrO2 calculated at temperature of 800 K are 74.27 and 77.98 J/K/Nmol, respectively. The result of thermodynamic properties calculations show that doping scandium in zirconia enhances its entropy and specific heat capacity thereby allowing it to be thermodynamically stable for a wide range of electronic applications.
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spelling doaj-art-31279ba380b34e3289bafe0cb547cf4b2025-02-03T01:30:22ZengWileyAdvances in Condensed Matter Physics1687-81242024-01-01202410.1155/2024/9607696First Principle Study of Structural, Electronic, Optical, and Thermodynamic Properties of Scandium-Doped Zirconia Zr1−xScxO2,x=0.125Lemessa Asefa Eressa0Zeleke Deressa Gerbi1Department of PhysicsDepartment of PhysicsThe effect of scandium doping on the structural, electronic, optical, and thermodynamic properties of scandium-doped zirconia (Zr0.875Sc0.125 O1.9375) was investigated by first-principles calculations. The results of electronic property calculation show that the incorporation of scandium (Sc3+) in ZrO2 has reduced its bandgap due to the formation of scandium 3d states in the conduction band. The analysis of optical properties shows that scandium doping in ZrO2 improves the real ε1 and imaginary dielectric functions ε2, extinction coefficient (k), refractive index (n), reflectivity (R), and absorption coefficient (α) properties thereby enhancing its photocatalytic and optical activities. The heat capacities of ZrO2 and Sc-ZrO2 calculated at temperature of 800 K are 74.27 and 77.98 J/K/Nmol, respectively. The result of thermodynamic properties calculations show that doping scandium in zirconia enhances its entropy and specific heat capacity thereby allowing it to be thermodynamically stable for a wide range of electronic applications.http://dx.doi.org/10.1155/2024/9607696
spellingShingle Lemessa Asefa Eressa
Zeleke Deressa Gerbi
First Principle Study of Structural, Electronic, Optical, and Thermodynamic Properties of Scandium-Doped Zirconia Zr1−xScxO2,x=0.125
Advances in Condensed Matter Physics
title First Principle Study of Structural, Electronic, Optical, and Thermodynamic Properties of Scandium-Doped Zirconia Zr1−xScxO2,x=0.125
title_full First Principle Study of Structural, Electronic, Optical, and Thermodynamic Properties of Scandium-Doped Zirconia Zr1−xScxO2,x=0.125
title_fullStr First Principle Study of Structural, Electronic, Optical, and Thermodynamic Properties of Scandium-Doped Zirconia Zr1−xScxO2,x=0.125
title_full_unstemmed First Principle Study of Structural, Electronic, Optical, and Thermodynamic Properties of Scandium-Doped Zirconia Zr1−xScxO2,x=0.125
title_short First Principle Study of Structural, Electronic, Optical, and Thermodynamic Properties of Scandium-Doped Zirconia Zr1−xScxO2,x=0.125
title_sort first principle study of structural electronic optical and thermodynamic properties of scandium doped zirconia zr1 xscxo2 x 0 125
url http://dx.doi.org/10.1155/2024/9607696
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