I.S. Yahia
Ain Shams University
588 Papers
1.1K Citations
I.S. Yahia is an academic researcher from Ain Shams University. The author has contributed to research in topics: Band gap & Thin film. The author has an hindex of 38, co-authored 443 publications. Previous affiliations of I.S. Yahia include King Khalid University & Fırat University.
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Papers
Nanostructured pyronin Y thin films as a new organic semiconductor: Linear/nonlinear optics, band gap and dielectric properties
TL;DR: In this article, the structure properties of pyronin Y thin films with different thicknesses were investigated by using X-ray diffraction (XRD) and atomic force microscope (AFM).
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Fabrication and electrical characterization of the InSbS3/n-Si heterojunction
TL;DR: In this article, polycrystalline InSbS 3 /n-Si thin films were fabricated successfully at first time on the n-Si wafer by spray pyrolysis system.
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Structural, electrical, and nonlinear optical performance of PVAL embedded with Li+‐ions for multifunctional devices
H. Elhosiny Ali,H. Elhosiny Ali,H. Elhosiny Ali,Marwa M. Abdel-Aziz,Marwa M. Abdel-Aziz,Ahmed M. Nawar,Ahmed M. Nawar,Hamed Algarni,Heba Y. Zahran,Heba Y. Zahran,I.S. Yahia,I.S. Yahia,I.S. Yahia,Yasmin Khairy +13 more
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Effect of organic dyes on structural properties, linear optics and impedance spectroscopy of methyl orange (C.I. acid orange 52) doped polyvinyl alcohol composite thin films
W. Jilani,W. Jilani,A. Bouzidi,I.S. Yahia,I.S. Yahia,I.S. Yahia,Hajer Guermazi,Heba Y. Zahran,Heba Y. Zahran,Heba Y. Zahran,G. Saker +10 more
TL;DR: In this paper, the effect of methyl orange (MEO) dye on structural properties, linear optics and impedance spectroscopy of the polymer polyvinyl alcohol (PVA) is studied.
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Synthesis and optical characterization of nanocrystalline fluorine-doped tin oxide films: conductive window layer for optoelectronic applications
TL;DR: The surface morphology and average crystallite size of the deposited TCOs thin films were investigated by the field emission scanning electron microscope and X-ray diffraction technique as discussed by the authors, where the crystalline grains of the as deposited films preferentially oriented along (101) plane according to the tetragonal crystal structure of SnO2.
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