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Researcher at Research Department
Ask questions about Abdelkrim Guendouzi's research, publications, and ongoing work
Synthesized and evaluated pyrazole carbothioamide heterocycles as effective corrosion inhibitors for mild steel in acidic environments, using experimental and theoretical methods.
Employed density functional theory (DFT) to study the interactions between β-Cyclodextrin and 8-Anilinonaphthalene-1-sulfonate, analyzing molecular structure, HOMO, LUMO, NBO, QTAIM, and NMR.
Synthesized mesoporous silica from local kaolin and applied it as an effective adsorbent for removing Acid Red 337 from aqueous solutions and treating real industrial textile effluent.
Employed computational approaches to discover potential antimalarial drugs against malaria parasites through haplopine modification.
Utilized 2D-QSAR, molecular docking, molecular dynamics, and ADMET prediction to design novel phenylsulfonyl furoxan and phenstatin derivatives as multi-target anti-cancer inhibitors.
Identified tuberculosis inhibitors through QSAR-based virtual screening and molecular dynamics simulation of novel pyrimidine derivatives.
Experimentally and theoretically investigated the green approach to steel corrosion inhibition performance of an aqueous mixture of Olea europaea and Ficus carica leaves extract in acid medium.
Abdelkrim Guendouzi's research focuses on computational drug discovery, corrosion inhibition, and adsorption techniques for pollutant removal, contributing to advancements in materials science and pharmaceutical research. His work combines experimental and theoretical approaches to develop novel solutions for industrial and environmental challenges.
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