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  4. SCAPS simulation of novel inorganic ZrS2/CuO heterojunction solar cells
 
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2023
Journal Article
Title

SCAPS simulation of novel inorganic ZrS2/CuO heterojunction solar cells

Abstract
ZrS2 is transition metal dichalcogenides (TMDCs) which is believed one of the most talented applicants to fabricate photovoltaics. Therefore, we present here for the first-time numerical simulation of novel inorganic ZrS2/CuO heterojunction solar cells employing SCAPS-1D. The influence of the thickness, carrier concentration, and bandgap for both the window and absorber layers on the solar cell fundamental parameters was explored intensely. Our results reveal that the solar cell devices performance is mainly affected by many parameters such as the depletion width (Wd), built-in voltage (Vbi), collection length of charge carrier, the minority carrier lifetime, photogenerated current, and recombination rate. The η of 23.8% was achieved as the highest value for our simulated devices with the Voc value of 0.96 V, the Jsc value of 34.2 mA/cm2, and the FF value of 72.2%. Such efficiency was obtained when the CuO band gap, thickness, and carrier concentration were 1.35 eV, 5.5 µm, and above 1018 cm-3, respectively, and for the ZrS2 were 1.4 eV, 1 µm, and less than 1020 cm-3, respectively. Our simulated results indicate that the inorganic ZrS2/CuO heterojunction solar cells are promising to fabricate low-cost, large-scale, and high-efficiency photovoltaic devices.
Author(s)
Abdelfatah, Mahmoud
KafrelSheikh University
El Sayed, Adel M.
Fayoum University
Ismail, Walid
KafrelSheikh University
Ulrich, Stephan  
Fraunhofer-Institut für Schicht- und Oberflächentechnik IST  
Sittinger, Volker  
Fraunhofer-Institut für Schicht- und Oberflächentechnik IST  
El-Shaer, Abdelhamid
KafrelSheikh University
Journal
Scientific Reports  
Open Access
DOI
10.1038/s41598-023-31553-4
Additional link
Full text
Language
English
Fraunhofer-Institut für Schicht- und Oberflächentechnik IST  
Keyword(s)
  • SCAPS

  • Solar Cell Capacitance Simulator

  • Simulation

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