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Seyed Mohammad Elahi

Researcher at Islamic Azad University

Publications -  110
Citations -  1601

Seyed Mohammad Elahi is an academic researcher from Islamic Azad University. The author has contributed to research in topics: Density functional theory & Thin film. The author has an hindex of 19, co-authored 105 publications receiving 1208 citations. Previous affiliations of Seyed Mohammad Elahi include Islamic Azad University, Science and Research Branch, Tehran & Islamic Azad University Central Tehran Branch.

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Electronic and optical properties of 2D graphene-like compounds titanium carbides and nitrides: DFT calculations

TL;DR: In this paper, a first principles study of the electronic and optical properties of the graphene-like Ti n +1 X n (n = 1,2; X = N,C) has been done in the framework of the Density Functional Theory (DFT) to obtain associated quantities as the dielectric function, energy-loss function, reflectivity and absorption spectra.
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Stereometric Parameters of the Cu/Fe NPs Thin Films

TL;DR: In this paper, the 3D surface morphology of thin films of Fe on Cu nanoparticles synthesized by direct-current (DC) magnetron sputtering deposited on glass substrates was analyzed.
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Microstructure and micromorphology of ZnO thin films: Case study on Al doping and annealing effects

TL;DR: In this article, the 3D surface texture of Aliminium doped Zinc Oxide (AZO) thin films deposited by Radio Frequency sputtering method on the quartz substrates was investigated.
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Effects of annealing atmosphere and rGO concentration on the optical properties and enhanced photocatalytic performance of SnSe/rGO nanocomposites

TL;DR: The photocatalytic properties of SnSe nanostructures (NSs) and SnSe/graphene nanocomposites with different graphene concentrations (5, 10, and 15 wt%/v) were investigated and showed that graphene concentration at an optimum amount was an important factor in enhancing the photocatalyst performance.
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Multifractal spectra of atomic force microscope images of Cu/Fe nanoparticles based films thickness

TL;DR: In this paper, the thickness influence of Fe on the 3D surface morphology of thin films was analyzed by means of X-ray diffraction, atomic force microscopy (AFM) and multifractal analysis.