Combined electronic/atomic level computational, surface (SEM/EDS), chemical and electrochemical studies of the mild steel surface by quinoxalines derivatives anti-corrosion properties in 1 mol⋅L-1 HCl solution
F. BenhibaLaboratory of Materials, Nanotechnology and Environment, Faculty of Sciences, Mohammed V University, Av. Ibn Battouta, P.O. Box 1014, Agdal-Rabat, MoroccoZakaria BenzekriLaboratory of Organic Synthesis, Organometallic and Theoretical, Faculty of Sciences, Ibn Tofail University, P.O. Box 133, 14000, Kenitra, MoroccoA. GuenbourLaboratory of Materials, Nanotechnology and Environment, Faculty of Sciences, Mohammed V University, Av. Ibn Battouta, P.O. Box 1014, Agdal-Rabat, MoroccoMohamed TabyaouıLaboratory of Materials, Nanotechnology and Environment, Faculty of Sciences, Mohammed V University, Av. Ibn Battouta, P.O. Box 1014, Agdal-Rabat, MoroccoA. BellaouchouLaboratory of Materials, Nanotechnology and Environment, Faculty of Sciences, Mohammed V University, Av. Ibn Battouta, P.O. Box 1014, Agdal-Rabat, MoroccoSaı̈d BoukhrisLaboratory of Organic Synthesis, Organometallic and Theoretical, Faculty of Sciences, Ibn Tofail University, P.O. Box 133, 14000, Kenitra, MoroccoH. OuddaLaboratory of Separation Processes, Faculty of Sciences, Ibn Tofail University, P.O. Box 133, 14000, Kenitra, MoroccoIsmail WaradDepartment of Chemistry and Earth Sciences, P.O. Box 2713, Qatar University, Doha, QatarA. ZarroukLaboratory of Materials, Nanotechnology and Environment, Faculty of Sciences, Mohammed V University, Av. Ibn Battouta, P.O. Box 1014, Agdal-Rabat, Morocco
2020en
ABI
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