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S. AlFaify

Researcher at King Khalid University

Publications -  368
Citations -  7725

S. AlFaify is an academic researcher from King Khalid University. The author has contributed to research in topics: Thin film & Band gap. The author has an hindex of 37, co-authored 334 publications receiving 5158 citations. Previous affiliations of S. AlFaify include Center for Advanced Materials.

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Tailoring the structural, morphological, optical and dielectric properties of lead iodide through Nd 3+ doping

TL;DR: SEM study confirm the formation of nanorods and single crystal nanosheets of very few nanometers in size and relaxed nanostructure formation and occurrence of confinement effect in Nd3+ doped PbI2 synthesized via microwave-assisted technique.
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Sn-doped ZnO nanocrystalline thin films with enhanced linear and nonlinear optical properties for optoelectronic applications

TL;DR: In this paper, nanocrystalline undoped and Sn doped ZnO thin films with different doping concentrations (1, 3, 5, 7 ) have been deposited on glass substrate by low cost spin coating technique.
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An investigation on the key features of a D–π–A type novel chalcone derivative for opto-electronic applications

TL;DR: In this article, the authors focused on the donor-bridge-acceptor (Dπ-A) type of novel organic charge transport and non-linear optical material, 1-(4-bromophenyl)-3-(2,4,5-trimethoxyphenyl) prop-2-en-1-one (2, 4, 5-TMBC) to spotlight its various important properties through experimental and quantum chemical approaches.
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Tailoring the linear and nonlinear optical properties of NiO thin films through Cr 3+ doping

TL;DR: In this article, the effect of Cr doping on structural, vibrational, morphological, optical and nonlinear optical properties of NiO has been studied, and the results showed that the properties of Cr-doped NiO are of polycrystalline nature with cubic phase.
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A facile spray pyrolysis fabrication of Sm:CdS thin films for high-performance photodetector applications

TL;DR: In this article, facile fabrication and characterization of novel samarium (1, 3 and 5 wt.% Sm)-doped CdS thin films for the photodetector applications have been demonstrated.