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Khalida F. Al-Azawi

Researcher at University of Technology, Iraq

Publications -  21
Citations -  291

Khalida F. Al-Azawi is an academic researcher from University of Technology, Iraq. The author has contributed to research in topics: Adsorption & Corrosion. The author has an hindex of 6, co-authored 14 publications receiving 181 citations. Previous affiliations of Khalida F. Al-Azawi include Applied Science Private University.

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Coumarins as Potential Antioxidant Agents Complemented with Suggested Mechanisms and Approved by Molecular Modeling Studies

TL;DR: Hartree–Fock–based quantum chemical studies have been carried out with the basis set to 3-21G, in order to obtain information about the three-dimensional geometries, electronic structure, molecular modeling, and electronic levels, namely HOMO (highest occupied molecular orbital) and LUMO (lowest unoccupied molecular orbital), to understand the antioxidant activity for the synthesized compounds.
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Quantum chemical elucidation on corrosion inhibition efficiency of Schiff base: DFT investigations supported by weight loss and SEM techniques

TL;DR: In this article, the corrosion inhibition of Schiff base, namely 2-((2-hydroxy-5methoxybenzylidene)amino)pyridine (HMAP), for mild steel (MS) in a 1-M hydrochloric acid environment was investigated by means of weight loss and scanning electron microscopy techniques.
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Experimental and quantum chemical simulations on the corrosion inhibition of mild steel by 3-((5-(3,5-dinitrophenyl)-1,3,4-thiadiazol-2-yl)imino)indolin-2-one

TL;DR: In this article, a thiadiazol derivative, namely 3-((5-(3,5-dinitrophenyl)-1,3,4-thiadia-drug-2-yl)imino)indolin-1-one (TDIO), was investigated for it inhibitive impacts in 1'M HCl medium on corrosion of mild steel using weight loss and scanning electron microscope techniques.
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Synthesis, inhibition effects and quantum chemical studies of a novel coumarin derivative on the corrosion of mild steel in a hydrochloric acid solution

TL;DR: The research shows that the synthesized macromolecule represents an excellent inhibitor for materials in acidic solutions and has maximum inhibition efficiency up to 96 % at 0.5 mM and diminishes with a higher temperature degree, which is revealing of chemical adsorption.