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Amanullah Fatehmulla

Professor

Professor, Department of Physics and Astronomy,

Sciences
Building 4, 2nd Floor, Office 2A 56,
publication
Conference Paper
2025

Effect of Chlorine Doping on the Optical Properties of Vacuum-Evaporated ZnTe Thin Films

ZnTe thin films of varying thicknesses (3000-6000 Å) were successfully prepared on glass substrates using the high vacuum evaporation (HVE) technique. Chlorine doping was performed by immersing the films in an aqueous bath (containing ZnCl2 + distilled water) at different concentrations (from 5% to 20%) for various immersion times. The thicker films were annealed (in a vacuum to analyze optical properties and in air to evaluate electrical properties) for 1 hour at different annealing temperatures (RT-300 °C) to examine the effects of annealing. The electrical resistivity of the Cl-doped ZnTe films decreases as the concentration of the Cl dopant increases. The optical band gap increases with increased dopant concentration. The optical constants (the refractive index and the extinction coefficient) decrease with Cl doping. Photoluminescence measurements of the films were conducted using emission spectra by exciting the samples with various excitation wavelengths. The films exhibited noticeable fluorescence at specific excitation wavelengths, displaying green and yellow emission bands. The quantum yield of the PL peaks was evaluated. The results indicate that Cl-doped ZnTe films are promising absorber layers for thin-film solar cells.

Magazine \ Newspaper
2025 IEEE 53rd Photovoltaic Specialists Conference (PVSC)
Pages
1372-1377
more of publication
publications

The development of sustainable and cost-effective electrocatalysts for the oxygen evolution reaction (OER) is essential for efficient hydrogen (H₂) production. In this study, Cu2(OH)3NO3 (CuHN)…

by Kumaravel, Sakthivel, Chandrasatheesh Chandramoorthy, Lalitha Gnanasekaran, Mathivanan Durai, Paranthaman Vijayakumar, Mani Durai, S. D. Priya, Amanullah Fatehmulla, Jagadeesh Kumar Alagarasan, and Young Ho Ahn
2025
publications

Titanium carbide (Ti 3 C 2), a two-dimensional material known as MXene, is a promising electrode material for supercapacitors. Herein, MXene was synthesized by etching the Ti₃AlC₂ MAX phase,…

by Sumathy, S., M. Parthasarathy, R. Suriakarthick, V. Gowthami, and Amanullah Fatehmulla
2025
publications

As a possible electrocatalyst, a two-dimensional heterostructure made up of a metal that conducts electricity very well and a metal oxide that conducts electricity has been discovered.

by Mondal, Aniruddha, Venkatanarayana Pappula, Apurba Sinhamahapatra, Ratiram Gomaji Chaudhary, Ahmed A. Abdala, Rajshree B. Jotania, Sudip Mondal, Amanullah Fatehmulla, and Arnab Kanti Giri
2025