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LAKHRISSI Brahim

Email : brahim.lakhrissi@uit.ac.ma

Établissement : Faculté des sciences

Laboratoire : Chimie Organique Catalyse et Environnement

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📚 Publications Scopus — Total : 177
Titre Année 🔗 Voir
Conducting polymers: Fundamental aspects, properties, synthesis, and structural elucidation 2026 🔗 Voir
Corrigendum to “Synthesis and characterization of novel Cu (II) and Zn (II) complexes of 5-{[(2-Hydroxyethyl) sulfanyl] methyl}-8-hydroxyquinoline as effective acid corrosion inhibitor by experimental and computational testings” [Chem. Phys. Lett. 754 (2020) 137771] (Chemical Physics Letters (2020) 754, (S0009261420306862), (10.1016/j.cplett.2020.137771)) 2025 🔗 Voir
Corrigendum to “Novel Cu (II) and Zn (II) complexes of 8-hydroxyquinoline derivatives as effective corrosion inhibitors for mild steel in 1.0 M HCl solution: Computer modeling supported experimental studies” [J. Mol. Liquids 290 (2019) 111243] (Journal of Molecular Liquids (2019) 290, (S0167732219306695), (10.1016/j.molliq.2019.111243)) 2025 🔗 Voir
New sugar-derived compounds as inhibitors of carbon steel against corrosion in acid solutions: experimental analyses and theoretical approaches 2025 🔗 Voir
Theoretical and experimental research of the ability of quinolin-8-ol compound derivative to inhibit C-steel corrosion in a molar hydrochloric acid environment 2025 🔗 Voir
Assessment of three quinolin-8-ol-imidazole hybrids as corrosion carbon steel inhibitors in acidic conditions employing practical and theoretical methodologies 2025 🔗 Voir
Green Deep Eutectic Solvents in Organic Chemistry 2025 🔗 Voir
Inhibitory performance of (E)-4-(3,4,5 trimethoxyphenyl)but-3-en-2-one crystal toward carbon steel corrosion in acid medium by practical and theoretical approaches 2025 🔗 Voir
Synthesis and characterization of two 8-quinolinol derivatives and their application as corrosion inhibitors for carbon steel in hydrochloric acid solution 2025 🔗 Voir
Corrosion inhibition and adsorption behaviour of two novel quinolin-8-ols on carbon steel surface in HCl: synthesis, electrochemical, surface characterisation, and quantum chemical approaches 2025 🔗 Voir
Corrosion Resistance of Two Newly Synthesized 8-Quinolinol-Benzimidazoles on Carbon Steel: An Experimental and Theoretical Investigation 2024 🔗 Voir
Synthesis, Biological Properties, and Molecular Docking Study of Novel 1,2,3-Triazole-8-quinolinol Hybrids 2024 🔗 Voir
Experimental and computational chemistry investigation of the molecular structures of new synthetic quinazolinone derivatives as acid corrosion inhibitors for mild steel 2024 🔗 Voir
Hindering Corrosion of Carbon Steel in the Hydrochloric Medium by a Newly Synthesized Quinolines: Experimental and Computational Approaches 2024 🔗 Voir
Evaluating the efficacy of synthesized quinoline derivatives as Corrosion inhibitors for mild steel in acidic environments: An analysis using electrochemical, computational, and surface techniques 2024 🔗 Voir
Multifunctional Magnetic Nanoparticles in Hyperthermia Therapy 2024 🔗 Voir
Chemically Modified Natural Alginate Polysaccharide as Green Corrosion Inhibitors 2024 🔗 Voir
Acid corrosion inhibition of mild steel by 8-hydroxyquinoline derivatives: organic synthesis, characterization, chemical, electrochemical investigation and theoretical calculations 2024 🔗 Voir
Assessment of New Imidazol Derivatives and Investigation of Their Corrosion-Reducing Characteristics for Carbon Steel in HCl Acid Solution 2023 🔗 Voir
Corrigendum to ‘Sample synthesis, characterization, experimental and theoretical study of the inhibitory power of new 8-hydroxyquinoline derivatives for mild steel in 1.0 M HCl’ [Journal of Molecular Structure, 1213 (2020) 128155] (Journal of Molecular Structure (2020) 1213, (S0022286020304804), (10.1016/j.molstruc.2020.128155)) 2023 🔗 Voir
Two pyran derivatives as corrosion inhibitors for mild steel in HCl solution: Experimental and theoretical investigations 2023 🔗 Voir
Corrigendum to ‘Synthesis, Structural confirmation, Antibacterial Properties and Bio-Informatics Computational Analyses of New Pyrrole Based on 8-Hydroxyquinoline’ Journal of Molecular Structure 1259 (2022) 132683 (Journal of Molecular Structure (2022) 1259, (S0022286022003568), (10.1016/j.molstruc.2022.132683)) 2023 🔗 Voir
Novel bio-based green and sustainable corrosion inhibitors: Development, characterization, and corrosion inhibition applications 2023 🔗 Voir
A combined experimental and theoretical approach to the elucidation of the corrosion inhibition property of 5-((4,5-dihydro-4-o-tolyltetrazol-1-yl)methyl)quinolin-8-ol for C22E steel in aggressive environment 2023 🔗 Voir
Corrigendum to “8-Hydroxyquinoline based chitosan derived carbohydrate polymer as biodegradable and sustainable acid corrosion inhibitor for mild steel: Experimental and computational analyses” [Int. J. Biol. Macromol. 26 (1) (2020) 645-655, (S0141813020327860), (10.1016/j.ijbiomac.2020.03.200)] 2023 🔗 Voir
In silico evaluation of molecular interactions between macrocyclic inhibitors with the HCV NS3 protease. Docking and identification of antiviral pharmacophore site 2023 🔗 Voir
The inhibitory effect of certain imidazole derivatives grafted on 8-hydroxyqinoline on carbon steel corrosion in acidic medium: experimental and computational approaches 2023 🔗 Voir
Synthesis of new halogenated compounds based on 8-hydroxyquinoline derivatives for the inhibition of acid corrosion: Theoretical and experimental investigations 2022 🔗 Voir
Bisquinoline analogs as corrosion inhibitors for carbon steel in acidic electrolyte: Experimental, DFT, and molecular dynamics simulation approaches 2022 🔗 Voir
Optical and Photovoltaic Properties of New Synthesized Quinoxaline-2,3 Dione Derivatives for Efficient Dye Sensitized Solar Cell Application 2022 🔗 Voir
Experimental and theoretical investigation of corrosion inhibition effect of two 8-hydroxyquinoline carbonitrile derivatives on mild steel in 1 M HCl solution 2022 🔗 Voir
Insight into the corrosion inhibition performance of two quinoline-3-carboxylate derivatives as highly efficient inhibitors for mild steel in acidic medium: Experimental and theoretical evaluations 2022 🔗 Voir
Synthesis, structural confirmation, antibacterial properties and bio-informatics computational analyses of new pyrrole based on 8-hydroxyquinoline 2022 🔗 Voir
Synthesis, characterization and bioactivity of novel 8-hydroxyquinoline derivatives: Experimental, molecular docking, DFT and POM analyses 2022 🔗 Voir
Experimental and theoretical investigations of two quinolin-8-ol derivatives as inhibitors for carbon steel in 1 M HCl solution 2022 🔗 Voir
Toxicological and Pharmacological Studies of a Crystal Structure Derivative of 8-Hydroxyquinoline 2022 🔗 Voir
Corrosion Effectiveness of 5-(4-Phenylpiperazin-1-yl) methyl) quinolin-8-ol for Carbon Steel in 1.0 M HCl 2022 🔗 Voir
Experimental and theoretical examinations of two quinolin-8-ol-piperazine derivatives as organic corrosion inhibitors for C35E steel in hydrochloric acid 2022 🔗 Voir
Novel triphenyl imidazole based on 8-hydroxyquinoline as corrosion inhibitor for mild steel in molar hydrochloric acid: experimental and theoretical investigations 2022 🔗 Voir
Heterocyclic corrosion inhibitors with multianchoring groups 2022 🔗 Voir
Synthesis, Identification, Antibacterial Activity, ADME/T and 1BNA-Docking Investigations of 8-Quinolinol Analogs Bearing a Benzimidazole Moiety 2022 🔗 Voir
Comparative Study of Corrosion Inhibition Effect for Ordinary Steel in HCl 5.0 M 2022 🔗 Voir
Development process for eco-friendly corrosion inhibitors 2022 🔗 Voir
Insight into the corrosion inhibition of new benzodiazepine derivatives as highly efficient inhibitors for mild steel in 1 M HCl: Experimental and theoretical study 2021 🔗 Voir
Insight into the corrosion inhibition of new bis-quinolin-8-ols derivatives as highly efficient inhibitors for C35E steel in 0.5 M H2SO4 2021 🔗 Voir
Synthesis, bioinformatics and biological evaluation of novel pyridine based on 8-hydroxyquinoline derivatives as antibacterial agents: DFT, molecular docking and ADME/T studies 2021 🔗 Voir
A facile and efficient synthesis of tetrahydrobenzo[b]pyrans and dihydropyrano[4,3-b]pyrans derivatives using phosphate fertilizers MAP, DAP, and TSP as heterogeneous catalysts 2021 🔗 Voir
Appraisal of corrosion inhibiting ability of new 5-N-((alkylamino)methyl)quinolin-8-ol analogs for C40E steel in sulfuric acid 2021 🔗 Voir
Effect of alkyl group position on adsorption behavior and corrosion inhibition of new naphthol based on 8-hydroxyquinoline: Electrochemical, surface, quantum calculations and dynamic simulations 2021 🔗 Voir
Functionalization effect on the corrosion inhibition of novel eco-friendly compounds based on 8-hydroxyquinoline derivatives: Experimental, theoretical and surface treatment 2021 🔗 Voir
Synthesis, Characterization, Biocomputational Modeling and Antibacterial Study of Novel Pyran Based on 8-Hydroxyquinoline 2021 🔗 Voir
8-hydroxyquinoline grafted triazole derivatives as corrosion inhibitors for carbon steel in H2SO4 solution: Electrochemical and theoretical studies 2021 🔗 Voir
Synthesis and anti-corrosion characteristics of new 8-quinolinol analogs with amide-substituted on C35E steel in acidic medium: Experimental and computational ways 2021 🔗 Voir
Experimental and empirical assessment of two new 8-hydroxyquinoline analogs as effective corrosion inhibitor for C22E steel in 1 M HCl 2021 🔗 Voir
A newly synthesized quinoline derivative as corrosion inhibitor for mild steel in molar acid medium: Characterization (SEM/EDS), experimental and theoretical approach 2021 🔗 Voir
Bio-active corrosion inhibitor based on 8-hydroxyquinoline-grafted-Alginate: Experimental and computational approaches 2021 🔗 Voir
Synthesis and antimicrobial activity evaluation of some new 7-substituted quinolin-8-ol derivatives: POM analyses, docking, and identification of antibacterial pharmacophore sites 2021 🔗 Voir
Green synthesis of novel carbohydrate polymer chitosan oligosaccharide grafted on D-glucose derivative as bio-based corrosion inhibitor 2021 🔗 Voir
Advances in the synthesis and use of 8-hydroxyquinoline derivatives as effective corrosion inhibitors for steel in acidic medium 2021 🔗 Voir
New N-Heterocyclic Compounds Based on 8-Hydroxyquinoline as Efficient Corrosion Inhibition for Mild Steel in HCl Solution: Experimental and Theoretical Assessments 2021 🔗 Voir
Corrosion inhibition effect of 5-(4-methylpiperazine)-methylquinoline-8-ol on carbon steel in molar acid medium 2021 🔗 Voir
Comprehensive assessment of corrosion inhibition mechanisms of novel benzimidazole compounds for mild steel in HCl: An experimental and theoretical investigation 2020 🔗 Voir
Electrochemical, thermodynamic and theoretical studies of some imidazole derivatives compounds as acid corrosion inhibitors for mild steel 2020 🔗 Voir
Chemically functionalized of 8-hydroxyquinoline derivatives as efficient corrosion inhibition for steel in 1.0 M HCl solution: Experimental and theoretical studies 2020 🔗 Voir
Electrochemical and theoretical study of newly quinoline derivatives as a corrosion inhibitors adsorption onmild steel in phosphoric acid media 2020 🔗 Voir
An experimental-coupled empirical investigation on the corrosion inhibitory action of 7-alkyl-8-Hydroxyquinolines on C35E steel in HCl electrolyte 2020 🔗 Voir
Simple preparation and characterization of novel 8-Hydroxyquinoline derivatives as effective acid corrosion inhibitor for mild steel: Experimental and theoretical studies 2020 🔗 Voir
Investigation of imidazole derivatives as corrosion inhibitors for mild steel in sulfuric acidic environment: Experimental and theoretical studies 2020 🔗 Voir
Experimental and computational investigations on the anti-corrosive and adsorption behavior of 7-N,N’-dialkyaminomethyl-8-Hydroxyquinolines on C40E steel surface in acidic medium 2020 🔗 Voir
New 8-hydroxyquinoline-bearing quinoxaline derivatives as effective corrosion inhibitors for mild steel in HCl: Electrochemical and computational investigations 2020 🔗 Voir
The inhibitory effect of two 5-alkylthio-8-hydroxyquinoline salts on steel C22E in a molar electrolyte of hydrochloric acid: Experimental and theoretical studies 2020 🔗 Voir
Synthesis and characterization of novel Cu (II) and Zn (II) complexes of 5-{[(2-Hydroxyethyl) sulfanyl] methyl}-8-hydroxyquinoline as effective acid corrosion inhibitor by experimental and computational testings 2020 🔗 Voir
New Epoxy sugar based glucose derivatives as eco friendly corrosion inhibitors for the carbon steel in 1.0 M HCl: Experimental and theoretical investigations 2020 🔗 Voir
Experimental, DFT calculations and MC simulations concept of novel quinazolinone derivatives as corrosion inhibitor for mild steel in 1.0 M HCl medium 2020 🔗 Voir
Sample synthesis, characterization, experimental and theoretical study of the inhibitory power of new 8-hydroxyquinoline derivatives for mild steel in 1.0 M HCl 2020 🔗 Voir
Selective synthesis of new sugars based on 8-hydroxyquinoline as corrosion inhibitors for mild steel in HCl solution-effect of the saturated hydrocarbon chain: Theoretical and experimental studies 2020 🔗 Voir
8-Hydroxyquinoline based chitosan derived carbohydrate polymer as biodegradable and sustainable acid corrosion inhibitor for mild steel: Experimental and computational analyses 2020 🔗 Voir
Synthesis of N-glycoside compounds from phthalimide and 5-nitrobenzimidazole via 1,2-O-sulfinyl derivatives and in vitro cytotoxic activity 2020 🔗 Voir
Monosaccharide derivatives as eco-friendly corrosion inhibitors for carbon steel in neutral and hydrochloric acid media 2020 🔗 Voir
Novel compounds of imidazole derivatives as effective corrosion inhibitors for mild steel in hydrochloric acid solution: Electrochemical and spectroscopic characterization 2020 🔗 Voir
Synthesis of new epoxy glucose derivatives as a non-toxic corrosion inhibitors for carbon steel in molar HCl: Experimental, DFT and MD simulation 2020 🔗 Voir
Synthesis, antibacterial study and corrosion inhibition potential of newly synthesis oxathiolan and triazole derivatives of 8-hydroxyquinoline: Experimental and theoretical approach 2020 🔗 Voir
Preparation and anti-corrosion activity of novel 8-hydroxyquinoline derivative for carbon steel corrosion in HCl molar: Computational and experimental analyses 2020 🔗 Voir
Computational simulation of the adsorption behavior of benzimidazolone derivatives as inhibitors for ordinary steel corrosion in HCL 1M 2020 🔗 Voir
Synthesis, characterization and corrosion inhibition potential of newly benzimidazole derivatives: Combining theoretical and experimental study 2020 🔗 Voir
Synthetic, spectroscopic characterization, empirical and theoretical investigations on the corrosion inhibition characteristics of mild steel in molar hydrochloric acid by three novel 8-hydroxyquinoline derivatives 2020 🔗 Voir
Electrochemical, surface and computational studies on the inhibition performance of some newly synthesized 8-hydroxyquinoline derivatives containing benzimidazole moiety against the corrosion of carbon steel in phosphoric acid environment 2020 🔗 Voir
Synthesis of new epoxy glucose derivatives as inhibitor for mild steel corrosion in 1.0 M HCl, Experimental study: Part -1 2020 🔗 Voir
Synthesis of new epoxy glucose derivatives as inhibitor for mild steel corrosion in 1.0 M HCl: DMol3 theory and molecular dynamics simulation study: Part-2 2020 🔗 Voir
Chemical composition and evaluation of antibacterial activity of fennel (Foeniculum vulgare mill) seed essential oil against some pathogenic bacterial strains 2020 🔗 Voir
Synthesis, characterization, and in vitro antimicrobial investigation of novel pyran derivatives based on 8-hydroxyquinoline 2019 🔗 Voir
The inhibitive impact of both kinds of 5-isothiocyanatomethyl-8-hydroxyquinoline derivatives on the corrosion of carbon steel in acidic electrolyte 2019 🔗 Voir
Synthesis of new heterocyclic systems oxazino derivatives of 8-Hydroxyquinoline: Drug design and POM analyses of substituent effects on their potential antibacterial properties 2019 🔗 Voir
Quantum chemical and experimental evaluation of the inhibitory action of two imidazole derivatives on mild steel corrosion in sulphuric acid medium 2019 🔗 Voir
Synthesis, antibacterial properties and bioinformatics computational analyses of novel 8-hydroxyquinoline derivatives 2019 🔗 Voir
Novel Cu (II) and Zn (II) complexes of 8-hydroxyquinoline derivatives as effective corrosion inhibitors for mild steel in 1.0 M HCl solution: Computer modeling supported experimental studies 2019 🔗 Voir
Benzodiazepine Derivatives as Corrosion Inhibitors of Carbon Steel in HCl Media: Electrochemical and Theoretical Studies 2019 🔗 Voir
Electrochemical and theoretical studies of novel quinoxaline derivatives as corrosion inhibitor for mild steel in HCl solution 2019 🔗 Voir
Performance and computational studies of new soluble triazole as corrosion inhibitor for carbon steel in HCl 2019 🔗 Voir
Synthesis and investigation of quinazoline derivatives based on 8-hydroxyquinoline as corrosion inhibitors for mild steel in acidic environment: experimental and theoretical studies 2019 🔗 Voir