Original Research
Cu2+ ions implanted porous titania for efficient dye sensitized solar cells
M. Irfan
a
M. I. Khan
a
I. Ul-Haq
a
M. Amam
a
Ihab M. Moussa
b
S. Mumtaz
c

aDepartment of Physics, The University of Lahore, 53700, Pakistan

bDepartment of Plant Production, College of Food & Agriculture Sciences, King Saud University, P.O. Box 2460, Riyadh 11451, Saudi Arabia

cElectrical and Biological Physics, Kwangwoon University, Seoul, 01897, South

Korea


Journal of Ovonic Research 2024, 20(4),417-433; https://doi.org/10.15251/JOR.2024.204.417
Submitted:Feb 05, 2024
Accepted:Jul 03, 2024
Published:Sept 01, 2024
+
Cite This Article
M. Irfan ,M. I. Khan ,I. Ul-Haq ,M. Amam ,Ihab M. Moussa ,S. Mumtaz . (2024). Journal of Ovonic Research. Cu2+ ions implanted porous titania for efficient dye sensitized solar cells, 20(4), ,417-433. https://doi.org/10.15251/JOR.2024.204.417
Abstract

In the quest to unlock the remarkable potential of nanotechnology, the sol-gel method was employed to craft a porous TiO2 nanostructured film, meticulously deposited onto FTO glass substrates. This endeavor marked a significant leap as a controlled bombardment of Cu ions, accelerated at 700 keV, at varying flux rates of 2x1013, 2x1014, and 2x1015 ions/cm² was introduced to these ingeniously engineered films. A comprehensive assessment of these nanocrystalline TiO2 structures, both before and after Cu+2 ion irradiation, revealed a fascinating array of results. he anatase tetragonal structure's permanence was validated by X-ray diffraction (XRD), which improved the material's stability and integrity. In the present study, an interesting observation was made that band edges show a dynamic behavior in Cu- irradiated samples in UV-Vis spectroscopy. At 2x1014 ions/cm2, the phenomena peaked, revealing an intriguing redshift and an exceptionally low band gap value of 3.39 eV. In photoluminescence spectra, the peaks corresponding to the lattice defects show a significant reduction when the flux of the Cu ions on TiO2 is adjusted to 2 x 1014 ions/cm2. It is an indication that film quality and purity have improved. This arrangement for photoanode modification helps in the development of dye-sensitized solar cells with tremendous characteristics. The fabricated device with this novel approach results in high values of open circuit voltage (Voc), short circuit current density (Jsc), fill factor (FF), and maximum photoconversion efficiency of 5.10%. These findings indicate a new era of possibilities in the field of renewable energy, since these nanostructured materials have the ability to significantly alter the solar field.

©2026 by the authors. Submitted for possible open access publication under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
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