Cargando…

DFT investigation of the electronic and optical properties of hexagonal MX(2)/ZrXO (M = W, Mo and X = S, Se) van der Waals heterostructures for photovoltaic solar cell application

The van der Waals heterostructure of Janus materials with a TMD monolayer was used to create a two-dimensional class of nanomaterials for photovoltaic solar cell applications. It is one of the potential methods for enhancing the performance of photovoltaic systems. Two monolayers of different 2D mat...

Descripción completa

Detalles Bibliográficos
Autores principales: Sibhatu, Aman kassaye, Teshome, Tamiru, Akin-Ojo, Omololu, Yimam, Abubeker, Asres, Georgies Alene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9608118/
https://www.ncbi.nlm.nih.gov/pubmed/36349161
http://dx.doi.org/10.1039/d2ra05310a
_version_ 1784818700848726016
author Sibhatu, Aman kassaye
Teshome, Tamiru
Akin-Ojo, Omololu
Yimam, Abubeker
Asres, Georgies Alene
author_facet Sibhatu, Aman kassaye
Teshome, Tamiru
Akin-Ojo, Omololu
Yimam, Abubeker
Asres, Georgies Alene
author_sort Sibhatu, Aman kassaye
collection PubMed
description The van der Waals heterostructure of Janus materials with a TMD monolayer was used to create a two-dimensional class of nanomaterials for photovoltaic solar cell applications. It is one of the potential methods for enhancing the performance of photovoltaic systems. Two monolayers of different 2D materials, Janus (ZrXO) and TMDs (MX(2)), are stacked together to form the heterojunction. Based on density functional theory structural, electrical, and optical properties were investigated. The favorable stacking and stability of the MX(2)/ZrXO (M = W, Mo and X = S, Se) van der Waals heterostructures are confirmed through binding energies, phonon dispersion and ab initio molecular dynamics calculations. Standard excitonic peaks, which correspond to the bound valence-band hole and conduction-band electron, as well as excitonic peaks involving the mid-gap charges, can be seen in the system's computed absorption spectrum. MX(2)/ZrXO van der Waals heterostructures are excellent photovoltaic candidates with a maximum achived power conversion efficiency of above 22%. Furthermore, we discovered that the heterostructure materials have a high absorption efficiency which is good for the intended photovoltaic solar cell application.
format Online
Article
Text
id pubmed-9608118
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-96081182022-11-07 DFT investigation of the electronic and optical properties of hexagonal MX(2)/ZrXO (M = W, Mo and X = S, Se) van der Waals heterostructures for photovoltaic solar cell application Sibhatu, Aman kassaye Teshome, Tamiru Akin-Ojo, Omololu Yimam, Abubeker Asres, Georgies Alene RSC Adv Chemistry The van der Waals heterostructure of Janus materials with a TMD monolayer was used to create a two-dimensional class of nanomaterials for photovoltaic solar cell applications. It is one of the potential methods for enhancing the performance of photovoltaic systems. Two monolayers of different 2D materials, Janus (ZrXO) and TMDs (MX(2)), are stacked together to form the heterojunction. Based on density functional theory structural, electrical, and optical properties were investigated. The favorable stacking and stability of the MX(2)/ZrXO (M = W, Mo and X = S, Se) van der Waals heterostructures are confirmed through binding energies, phonon dispersion and ab initio molecular dynamics calculations. Standard excitonic peaks, which correspond to the bound valence-band hole and conduction-band electron, as well as excitonic peaks involving the mid-gap charges, can be seen in the system's computed absorption spectrum. MX(2)/ZrXO van der Waals heterostructures are excellent photovoltaic candidates with a maximum achived power conversion efficiency of above 22%. Furthermore, we discovered that the heterostructure materials have a high absorption efficiency which is good for the intended photovoltaic solar cell application. The Royal Society of Chemistry 2022-10-27 /pmc/articles/PMC9608118/ /pubmed/36349161 http://dx.doi.org/10.1039/d2ra05310a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Sibhatu, Aman kassaye
Teshome, Tamiru
Akin-Ojo, Omololu
Yimam, Abubeker
Asres, Georgies Alene
DFT investigation of the electronic and optical properties of hexagonal MX(2)/ZrXO (M = W, Mo and X = S, Se) van der Waals heterostructures for photovoltaic solar cell application
title DFT investigation of the electronic and optical properties of hexagonal MX(2)/ZrXO (M = W, Mo and X = S, Se) van der Waals heterostructures for photovoltaic solar cell application
title_full DFT investigation of the electronic and optical properties of hexagonal MX(2)/ZrXO (M = W, Mo and X = S, Se) van der Waals heterostructures for photovoltaic solar cell application
title_fullStr DFT investigation of the electronic and optical properties of hexagonal MX(2)/ZrXO (M = W, Mo and X = S, Se) van der Waals heterostructures for photovoltaic solar cell application
title_full_unstemmed DFT investigation of the electronic and optical properties of hexagonal MX(2)/ZrXO (M = W, Mo and X = S, Se) van der Waals heterostructures for photovoltaic solar cell application
title_short DFT investigation of the electronic and optical properties of hexagonal MX(2)/ZrXO (M = W, Mo and X = S, Se) van der Waals heterostructures for photovoltaic solar cell application
title_sort dft investigation of the electronic and optical properties of hexagonal mx(2)/zrxo (m = w, mo and x = s, se) van der waals heterostructures for photovoltaic solar cell application
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9608118/
https://www.ncbi.nlm.nih.gov/pubmed/36349161
http://dx.doi.org/10.1039/d2ra05310a
work_keys_str_mv AT sibhatuamankassaye dftinvestigationoftheelectronicandopticalpropertiesofhexagonalmx2zrxomwmoandxssevanderwaalsheterostructuresforphotovoltaicsolarcellapplication
AT teshometamiru dftinvestigationoftheelectronicandopticalpropertiesofhexagonalmx2zrxomwmoandxssevanderwaalsheterostructuresforphotovoltaicsolarcellapplication
AT akinojoomololu dftinvestigationoftheelectronicandopticalpropertiesofhexagonalmx2zrxomwmoandxssevanderwaalsheterostructuresforphotovoltaicsolarcellapplication
AT yimamabubeker dftinvestigationoftheelectronicandopticalpropertiesofhexagonalmx2zrxomwmoandxssevanderwaalsheterostructuresforphotovoltaicsolarcellapplication
AT asresgeorgiesalene dftinvestigationoftheelectronicandopticalpropertiesofhexagonalmx2zrxomwmoandxssevanderwaalsheterostructuresforphotovoltaicsolarcellapplication