Prof. Dr. at Department of Physics, College of Science.
Applied Physics, renewable energies, Solar Cells, Optoelectronics, and Nanotechnology.
Postgraduates:
2023-2024 Semiconductors Physics, Ph.D. Course.
Undergraduates:
2023-2024 Solar Energy, 4th stage 2023-2024 Methodology of Research, 4th Stage.
The chemical bath deposition technique (CBD) is considered the cheapest and easiest compared with other deposition techniques. However, it is highly sensitive to effective parameter deposition values such as pH, temperature, and so on. The pH value of the reaction solution has a direct impact on both the nucleation and growth rate of the film. Consequently, this study presents a novel investigation into the effect of a precise change. in the pH reaction solution value on the structural, morphological, and photoresponse characteristics of tin monosulphide (SnS) films. The films were grown on a flexible polyester substrate with pH values of 7.1, 7.4, and 7.7. The X-ray diffraction patterns of the grown films at pH 7.1 and 7.4 confirmed
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