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Experimental and Theoretical Studies for Mild Steel Corrosion Inhibition in 1.0 M HCl by Two Stereoisomers of Benzothiazinone Derivatives

M. SahraneLaboratory of Organic, Organometalic and Theoretical Synthesis. Facult des Sciences; Universit Ibn Tofail, Kenitra, MoroccoTourya GhailaneLaboratory of Organic, Organometalic and Theoretical Synthesis. Facult des Sciences; Universit Ibn Tofail, Kenitra, MoroccoM. GalaiLaboratory of Materials, Electrochemistry and Environment, Faculty of Sciences; Universit Ibn Tofail, Kenitra, MoroccoAbdelaziz SouızıLaboratory of Organic, Organometalic and Theoretical Synthesis. Facult des Sciences; Universit Ibn Tofail, Kenitra, MoroccoM. Ebn TouhamıLaboratory of Materials, Electrochemistry and Environment, Faculty of Sciences; Universit Ibn Tofail, Kenitra, MoroccoRachida GhaılaneLaboratory of Organic, Organometalic and Theoretical Synthesis. Facult des Sciences; Universit Ibn Tofail, Kenitra, MoroccoR. TouirLaboratory of Materials, Electrochemistry and Environment, Faculty of Sciences; Universit Ibn Tofail, Kenitra, Morocco
2019en
ABI

Аннотация

Mild steel corrosion inhibition in 1.0 M HCl, by two stereoisomers of 2-phenylbenzothiazin-3-one (BHT1) and 3-phenyl-benzothiazin-2-one (BHT2), was researched using experimental and theoretical studies. The experimental results showed that the inhibition efficiency depends on the concentration and molecular structure of the investigated compounds, and it reached a maximum of 95 % and 96 %, at 10 -4 M and 10 -5 M of BHT1 and BTH2, respectively. This difference can be explained by the formation of hydrogen bonds, in BHT1 case. In addition, the polarization studies indicated that the above mentioned products acted as mixed type inhibitors. The molecular structure influence on the corrosion inhibition efficiency was theoretically investigated using DFT calculations. The structural and electronic parameters were determined, and showed good agreement with the experimental results.

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