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A Thorough Investigation of Electronic, Optical, Mechanical, and Thermodynamic Properties of Stable Glasslike Sodium Germanate under Compressive Hydrostatic Pressure: Ab Initio Study

[Image: see text] In this paper, we have tried to elucidate the variation of structural, electronic, and thermodynamic properties of glasslike Na(2)GeO(3) under compressive isotropic pressure within a framework of density functional theory (DFT). The result shows stable structural (orthorhombic → te...

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Autores principales: Renthlei, Zosiamliana, Prasad, Mattipally, Sivakumar, Juluru, Zuala, Lalhriat, Pachuau, Lalrinthara, Devi, Yengkhom Rangeela, Singh, Ningthoujam Surajkumar, Abdurakhmanov, Gulmurza, Laref, Amel, Rai, Dibya Prakash
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10193426/
https://www.ncbi.nlm.nih.gov/pubmed/37214663
http://dx.doi.org/10.1021/acsomega.3c00499
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author Renthlei, Zosiamliana
Prasad, Mattipally
Sivakumar, Juluru
Zuala, Lalhriat
Pachuau, Lalrinthara
Devi, Yengkhom Rangeela
Singh, Ningthoujam Surajkumar
Abdurakhmanov, Gulmurza
Laref, Amel
Rai, Dibya Prakash
author_facet Renthlei, Zosiamliana
Prasad, Mattipally
Sivakumar, Juluru
Zuala, Lalhriat
Pachuau, Lalrinthara
Devi, Yengkhom Rangeela
Singh, Ningthoujam Surajkumar
Abdurakhmanov, Gulmurza
Laref, Amel
Rai, Dibya Prakash
author_sort Renthlei, Zosiamliana
collection PubMed
description [Image: see text] In this paper, we have tried to elucidate the variation of structural, electronic, and thermodynamic properties of glasslike Na(2)GeO(3) under compressive isotropic pressure within a framework of density functional theory (DFT). The result shows stable structural (orthorhombic → tetragonal) and electronic (indirect → direct) phase transitions at P ∼ 20 GPa. The electronic band gap transition plays a key role in the enhancement of optical properties. The results of the thermodynamic properties have shown that Na(2)GeO(3) follows Debye’s low-temperature specific heat law and the classical thermodynamic of the Dulong–Petit law at high temperature. The pressure sensitivity of the electronic properties led us to compute the piezoelectric tensor (both in relaxed and clamped ions). We have observed significant electric responses in the form of a piezoelectric coefficient under applied pressure. This property suggested that Na(2)GeO(3) could be a potential material for energy harvest in future energy-efficient devices. As expected, Na(2)GeO(3) becomes harder and harder under compressive pressure up to the phase transition pressure (∼20 GPa) which can be read from Pugh’s ratio (k(H)) > 1.75, however, at pressures above 20 GPa k(H) < 1.75, which may be due to the formation of fractures at high pressure.
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spelling pubmed-101934262023-05-19 A Thorough Investigation of Electronic, Optical, Mechanical, and Thermodynamic Properties of Stable Glasslike Sodium Germanate under Compressive Hydrostatic Pressure: Ab Initio Study Renthlei, Zosiamliana Prasad, Mattipally Sivakumar, Juluru Zuala, Lalhriat Pachuau, Lalrinthara Devi, Yengkhom Rangeela Singh, Ningthoujam Surajkumar Abdurakhmanov, Gulmurza Laref, Amel Rai, Dibya Prakash ACS Omega [Image: see text] In this paper, we have tried to elucidate the variation of structural, electronic, and thermodynamic properties of glasslike Na(2)GeO(3) under compressive isotropic pressure within a framework of density functional theory (DFT). The result shows stable structural (orthorhombic → tetragonal) and electronic (indirect → direct) phase transitions at P ∼ 20 GPa. The electronic band gap transition plays a key role in the enhancement of optical properties. The results of the thermodynamic properties have shown that Na(2)GeO(3) follows Debye’s low-temperature specific heat law and the classical thermodynamic of the Dulong–Petit law at high temperature. The pressure sensitivity of the electronic properties led us to compute the piezoelectric tensor (both in relaxed and clamped ions). We have observed significant electric responses in the form of a piezoelectric coefficient under applied pressure. This property suggested that Na(2)GeO(3) could be a potential material for energy harvest in future energy-efficient devices. As expected, Na(2)GeO(3) becomes harder and harder under compressive pressure up to the phase transition pressure (∼20 GPa) which can be read from Pugh’s ratio (k(H)) > 1.75, however, at pressures above 20 GPa k(H) < 1.75, which may be due to the formation of fractures at high pressure. American Chemical Society 2023-05-04 /pmc/articles/PMC10193426/ /pubmed/37214663 http://dx.doi.org/10.1021/acsomega.3c00499 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Renthlei, Zosiamliana
Prasad, Mattipally
Sivakumar, Juluru
Zuala, Lalhriat
Pachuau, Lalrinthara
Devi, Yengkhom Rangeela
Singh, Ningthoujam Surajkumar
Abdurakhmanov, Gulmurza
Laref, Amel
Rai, Dibya Prakash
A Thorough Investigation of Electronic, Optical, Mechanical, and Thermodynamic Properties of Stable Glasslike Sodium Germanate under Compressive Hydrostatic Pressure: Ab Initio Study
title A Thorough Investigation of Electronic, Optical, Mechanical, and Thermodynamic Properties of Stable Glasslike Sodium Germanate under Compressive Hydrostatic Pressure: Ab Initio Study
title_full A Thorough Investigation of Electronic, Optical, Mechanical, and Thermodynamic Properties of Stable Glasslike Sodium Germanate under Compressive Hydrostatic Pressure: Ab Initio Study
title_fullStr A Thorough Investigation of Electronic, Optical, Mechanical, and Thermodynamic Properties of Stable Glasslike Sodium Germanate under Compressive Hydrostatic Pressure: Ab Initio Study
title_full_unstemmed A Thorough Investigation of Electronic, Optical, Mechanical, and Thermodynamic Properties of Stable Glasslike Sodium Germanate under Compressive Hydrostatic Pressure: Ab Initio Study
title_short A Thorough Investigation of Electronic, Optical, Mechanical, and Thermodynamic Properties of Stable Glasslike Sodium Germanate under Compressive Hydrostatic Pressure: Ab Initio Study
title_sort thorough investigation of electronic, optical, mechanical, and thermodynamic properties of stable glasslike sodium germanate under compressive hydrostatic pressure: ab initio study
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10193426/
https://www.ncbi.nlm.nih.gov/pubmed/37214663
http://dx.doi.org/10.1021/acsomega.3c00499
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