The Impact of Nanomaterials on Improving the Efficiency of Solar Cells: A Modern Analytical Study

Authors

  • Rabeaa ali ahmed aburtima univesity of Engineering Technology – Janzur Author

DOI:

https://doi.org/10.65405/vba1ex76

Abstract

Nanomaterials represent one of the primary pillars in developing modern solar cell technologies due to their ability to modify optical and electronic properties at the nanometric level. Consequently, the world is witnessing a significant shift toward clean energy, with solar cells being one of the most prominent of these technologies.

This study aims to analyze the latest research (2024/2025) related to the impact of nanostructures (nanoparticles and quantum dots) on improving photovoltaic conversion efficiency.

Experimental results were linked to the physical foundations governing solar cell operation. The results indicate that integrating nanostructures can increase practical efficiency by 5-20%, depending on the cell type, offering future prospects for surpassing traditional theoretical limits.

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References

1. N. Mufti et al., "Improved performance of a SWCNT/ZnO nanostructure-integrated silicon thin-film solar cell," Materials Advances, 2024, doi: 10.1039/D4MA00726C.

2. B. Yang et al., "Nanocrystals as performance-boosting materials for solar cells," Nanoscale Advances, 2024, doi: 10.1039/D3NA01063E.

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4. "Advancements in nanomaterials for solar energy harvesting," Chemical Engineering Journal, 2025, doi: 10.1016/j.cej.2025.164224.

5. T. Kirchartz et al., "The state of the art in photovoltaic materials," Nature Reviews Materials, 2025, doi: 10.1038/s41578-025-00784.

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Published

2025-03-02

How to Cite

The Impact of Nanomaterials on Improving the Efficiency of Solar Cells: A Modern Analytical Study. (2025). Comprehensive Journal of Science, 9(35), 85-92. https://doi.org/10.65405/vba1ex76