Effect of Li₂O Molar Concentration on Current–Voltage Characteristics and Photovoltaic Performance of Solar Cells

Authors

  • Mohammedain Adam Allhgabo Belal Department of Physics, Faculty of Science, University of Kordofan, Elobeid, Sudan Author
  • Shair Alla Ahmed Hasan Ahamed Department of Physics, Faculty of Science, University of Kordofan, Elobeid, Sudan Author
  • Ali Salih Ali Salih Department of Physics, Faculty of Education, University of Kordofan, Elobeid, Sudan Author
  • Mohammed Abbas Alhag Electrical Department, Faculty of Engineering and Technical Studies, Kordofan University, Sudan Author
  • Hajer Adam Mohmmed Adam Department of Physics, Department of Physical Sciences, Faculty of Science, Jazan University, Saudi Arabia Author
  • Hleima Faddal Ezaldein Rewais Department of Physics, Faculty of Education, University of Kordofan, Elobeid, Sudan Author
  • Safa Hussein Hassan Braima Department of Diagnostic Radiology, Military Hospital, Elobeid, Sudan Author
  • Tasabeeh Farh Althir Hassan Department of Diagnostic Radiology, Military Hospital, Elobeid, Sudan Author

Keywords:

Li₂O thin films; Solar cells; Molar concentration; Current–voltage characteristics; Power conversion efficiency; Fill factor

Abstract

This study investigates the effect of Li₂O molar concentration on the photovoltaic performance of solar cells. Thin films were prepared at molar concentrations of 0.3, 0.5, 0.7, 0.9, and 1.0 M, and their photovoltaic performance was evaluated by current–voltage (I–V) measurements under illumination. The results show that increasing the Li₂O concentration enhances light absorption and charge-carrier generation. Consequently, the short-circuit current density (Jsc) increased from 0.9266 to 0.9586 mA cm⁻². The highest photovoltaic performance was achieved at 1.0 M, with a short-circuit current (Isc) of 5.991 mA, an open-circuit voltage (Voc) of 0.582 V, a fill factor (FF) of 0.89, and a power conversion efficiency (η) of 0.903%. The improvement in device performance is attributed to enhanced optoelectronic properties and reduced internal losses at higher concentrations. The findings demonstrate that Li₂O molar concentration plays a significant role in determining the photovoltaic characteristics of solar cells and can be optimized to improve device performance.

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Published

2026-07-28

Issue

Section

Articles

How to Cite

Mohammedain Adam Allhgabo Belal, Shair Alla Ahmed Hasan Ahamed, Ali Salih Ali Salih, Mohammed Abbas Alhag, Hajer Adam Mohmmed Adam, Hleima Faddal Ezaldein Rewais, Safa Hussein Hassan Braima, & Tasabeeh Farh Althir Hassan. (2026). Effect of Li₂O Molar Concentration on Current–Voltage Characteristics and Photovoltaic Performance of Solar Cells. Middle East Journal of Pure and Applied Sciences (MEJPAS), 2(2), 07-17. https://mideastjournals.com/index.php/mejpas/article/view/60