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Strain Effects on the Electronic and Optical Properties of Kesterite Cu(2)ZnGeX(4) (X = S, Se): First-Principles Study

Following the chronological stages of calculations imposed by the WIEN2K code, we have performed a series of density functional theory calculations, from which we were able to study the effect of strain on the kesterite structures for two quaternary semiconductor compounds Cu [Formula: see text] ZnG...

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Autores principales: El Hamdaoui, Jawad, El-Yadri, Mohamed, Farkous, Mohamed, Kria, Mohamed, Courel, Maykel, Ojeda, Miguel, Pérez, Laura M., Tiutiunnyk, Anton, Laroze, David, Feddi, El Mustapha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8540091/
https://www.ncbi.nlm.nih.gov/pubmed/34685133
http://dx.doi.org/10.3390/nano11102692
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author El Hamdaoui, Jawad
El-Yadri, Mohamed
Farkous, Mohamed
Kria, Mohamed
Courel, Maykel
Ojeda, Miguel
Pérez, Laura M.
Tiutiunnyk, Anton
Laroze, David
Feddi, El Mustapha
author_facet El Hamdaoui, Jawad
El-Yadri, Mohamed
Farkous, Mohamed
Kria, Mohamed
Courel, Maykel
Ojeda, Miguel
Pérez, Laura M.
Tiutiunnyk, Anton
Laroze, David
Feddi, El Mustapha
author_sort El Hamdaoui, Jawad
collection PubMed
description Following the chronological stages of calculations imposed by the WIEN2K code, we have performed a series of density functional theory calculations, from which we were able to study the effect of strain on the kesterite structures for two quaternary semiconductor compounds Cu [Formula: see text] ZnGeS [Formula: see text] and Cu [Formula: see text] ZnGeSe [Formula: see text]. Remarkable changes were found in the electronic and optical properties of these two materials during the application of biaxial strain. Indeed, the band gap energy of both materials decreases from the equilibrium state, and the applied strain is more pronounced. The main optical features are also related to the applied strain. Notably, we found that the energies of the peaks present in the dielectric function spectra are slightly shifted towards low energies with strain, leading to significant refraction and extinction index responses. The obtained results can be used to reinforce the candidature of Cu [Formula: see text] ZnGeX [Formula: see text] (X = S, Se) in the field of photovoltaic devices.
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spelling pubmed-85400912021-10-24 Strain Effects on the Electronic and Optical Properties of Kesterite Cu(2)ZnGeX(4) (X = S, Se): First-Principles Study El Hamdaoui, Jawad El-Yadri, Mohamed Farkous, Mohamed Kria, Mohamed Courel, Maykel Ojeda, Miguel Pérez, Laura M. Tiutiunnyk, Anton Laroze, David Feddi, El Mustapha Nanomaterials (Basel) Article Following the chronological stages of calculations imposed by the WIEN2K code, we have performed a series of density functional theory calculations, from which we were able to study the effect of strain on the kesterite structures for two quaternary semiconductor compounds Cu [Formula: see text] ZnGeS [Formula: see text] and Cu [Formula: see text] ZnGeSe [Formula: see text]. Remarkable changes were found in the electronic and optical properties of these two materials during the application of biaxial strain. Indeed, the band gap energy of both materials decreases from the equilibrium state, and the applied strain is more pronounced. The main optical features are also related to the applied strain. Notably, we found that the energies of the peaks present in the dielectric function spectra are slightly shifted towards low energies with strain, leading to significant refraction and extinction index responses. The obtained results can be used to reinforce the candidature of Cu [Formula: see text] ZnGeX [Formula: see text] (X = S, Se) in the field of photovoltaic devices. MDPI 2021-10-13 /pmc/articles/PMC8540091/ /pubmed/34685133 http://dx.doi.org/10.3390/nano11102692 Text en © 2021 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
El Hamdaoui, Jawad
El-Yadri, Mohamed
Farkous, Mohamed
Kria, Mohamed
Courel, Maykel
Ojeda, Miguel
Pérez, Laura M.
Tiutiunnyk, Anton
Laroze, David
Feddi, El Mustapha
Strain Effects on the Electronic and Optical Properties of Kesterite Cu(2)ZnGeX(4) (X = S, Se): First-Principles Study
title Strain Effects on the Electronic and Optical Properties of Kesterite Cu(2)ZnGeX(4) (X = S, Se): First-Principles Study
title_full Strain Effects on the Electronic and Optical Properties of Kesterite Cu(2)ZnGeX(4) (X = S, Se): First-Principles Study
title_fullStr Strain Effects on the Electronic and Optical Properties of Kesterite Cu(2)ZnGeX(4) (X = S, Se): First-Principles Study
title_full_unstemmed Strain Effects on the Electronic and Optical Properties of Kesterite Cu(2)ZnGeX(4) (X = S, Se): First-Principles Study
title_short Strain Effects on the Electronic and Optical Properties of Kesterite Cu(2)ZnGeX(4) (X = S, Se): First-Principles Study
title_sort strain effects on the electronic and optical properties of kesterite cu(2)zngex(4) (x = s, se): first-principles study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8540091/
https://www.ncbi.nlm.nih.gov/pubmed/34685133
http://dx.doi.org/10.3390/nano11102692
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