ENERGY EFFICIENCY OF A PHOTOVOLTAIC CELL BASED THIN FILMS CZTS BY SCAPS

<p>In the overall context of the diversification of the use of natural resources, the use of renewable energy including solar photovoltaic has become increasingly indispensable. As such, the development of a new generation of photovoltaic cells based on CuZnSnS4 (CZTS) looks promising. Cu2ZnSn...

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Main Authors: C. Mebarkiaa, D. Dib, H. Zerfaoui, R. Belghit
Format: Article
Language:English
Published: El Oued University 2016-05-01
Series:Journal of Fundamental and Applied Sciences
Subjects:
Online Access:http://jfas.info/index.php/jfas/article/view/282
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spelling doaj-99332d53a2a94c03b9683c09f61bbb8a2020-11-24T23:29:28ZengEl Oued UniversityJournal of Fundamental and Applied Sciences1112-98672016-05-018234636210.4314/jfas.v8i2.13189ENERGY EFFICIENCY OF A PHOTOVOLTAIC CELL BASED THIN FILMS CZTS BY SCAPSC. Mebarkiaa0D. Dib1H. Zerfaoui2R. Belghit31Physics Laboratory of Applied and Theoretical LPAT, University larbi Tebessi, Tebessa, 12000Department of Electrical Engineering, Laboratory LABGET, University larbi Tebessi, Tebessa, 12000Physics Laboratory of Applied and Theoretical LPAT, University larbi Tebessi, Tebessa, 12000Physics Laboratory of Applied and Theoretical LPAT, University larbi Tebessi, Tebessa, 12000<p>In the overall context of the diversification of the use of natural resources, the use of renewable energy including solar photovoltaic has become increasingly indispensable. As such, the development of a new generation of photovoltaic cells based on CuZnSnS4 (CZTS) looks promising. Cu2ZnSnS4 (CZTS) is a new film absorber, with good physical properties (band gap energy 1.4-1.6 eV [01] with a large absorption coefficient over 10<sup>4</sup> cm<sup>-1</sup>). Indeed, the performance of these cells exceeded 30% in recent years.In the present paper, our work based on modeling and numerical simulation, we used SCAPS to study the performance of solar cells based on Cu2ZnSnS4 (CZTS) and thus evaluate the electrical efficiency η for typical structures of ZnO / i- ZnO / CdS / CZTS and ITO / ZnO / CdS / CZTS. Furthermore, the influence of the change of CdS by ZnSe buffer layer was treated in this paper.</p><strong></strong><em></em>http://jfas.info/index.php/jfas/article/view/282Solar cell, photovoltaic, thin film Cu2ZnSnS4, simulation, SCAPS
collection DOAJ
language English
format Article
sources DOAJ
author C. Mebarkiaa
D. Dib
H. Zerfaoui
R. Belghit
spellingShingle C. Mebarkiaa
D. Dib
H. Zerfaoui
R. Belghit
ENERGY EFFICIENCY OF A PHOTOVOLTAIC CELL BASED THIN FILMS CZTS BY SCAPS
Journal of Fundamental and Applied Sciences
Solar cell, photovoltaic, thin film Cu2ZnSnS4, simulation, SCAPS
author_facet C. Mebarkiaa
D. Dib
H. Zerfaoui
R. Belghit
author_sort C. Mebarkiaa
title ENERGY EFFICIENCY OF A PHOTOVOLTAIC CELL BASED THIN FILMS CZTS BY SCAPS
title_short ENERGY EFFICIENCY OF A PHOTOVOLTAIC CELL BASED THIN FILMS CZTS BY SCAPS
title_full ENERGY EFFICIENCY OF A PHOTOVOLTAIC CELL BASED THIN FILMS CZTS BY SCAPS
title_fullStr ENERGY EFFICIENCY OF A PHOTOVOLTAIC CELL BASED THIN FILMS CZTS BY SCAPS
title_full_unstemmed ENERGY EFFICIENCY OF A PHOTOVOLTAIC CELL BASED THIN FILMS CZTS BY SCAPS
title_sort energy efficiency of a photovoltaic cell based thin films czts by scaps
publisher El Oued University
series Journal of Fundamental and Applied Sciences
issn 1112-9867
publishDate 2016-05-01
description <p>In the overall context of the diversification of the use of natural resources, the use of renewable energy including solar photovoltaic has become increasingly indispensable. As such, the development of a new generation of photovoltaic cells based on CuZnSnS4 (CZTS) looks promising. Cu2ZnSnS4 (CZTS) is a new film absorber, with good physical properties (band gap energy 1.4-1.6 eV [01] with a large absorption coefficient over 10<sup>4</sup> cm<sup>-1</sup>). Indeed, the performance of these cells exceeded 30% in recent years.In the present paper, our work based on modeling and numerical simulation, we used SCAPS to study the performance of solar cells based on Cu2ZnSnS4 (CZTS) and thus evaluate the electrical efficiency η for typical structures of ZnO / i- ZnO / CdS / CZTS and ITO / ZnO / CdS / CZTS. Furthermore, the influence of the change of CdS by ZnSe buffer layer was treated in this paper.</p><strong></strong><em></em>
topic Solar cell, photovoltaic, thin film Cu2ZnSnS4, simulation, SCAPS
url http://jfas.info/index.php/jfas/article/view/282
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AT ddib energyefficiencyofaphotovoltaiccellbasedthinfilmscztsbyscaps
AT hzerfaoui energyefficiencyofaphotovoltaiccellbasedthinfilmscztsbyscaps
AT rbelghit energyefficiencyofaphotovoltaiccellbasedthinfilmscztsbyscaps
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