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Imidazole derivatives based on glycourils as efficient anti-corrosion inhibitors for copper in HNO3 solution: Synthesis, electrochemical, surface, and theoretical approaches

作   者:
El-Katori, Emad E.Ahmed, MostafaNady, H.
作者机构:
Fayoum UnivNew Valley Univ
关键词:
THERMAL-STABILITYAcid corrosionSurface morphologyIODIDECARBON-STEELADSORPTIONGlycourilM HCLImidazoleSOLDERABILITY PRESERVATIVES OSPSACIDIC-SOLUTIONCopperMILD-STEEL CORROSIONIONIC LIQUIDSCHLORIDE
期刊名称:
Colloids and Surfaces, A. Physicochemical and Engineering Aspects
i s s n:
0927-7757
年卷期:
2022 年 649 卷
页   码:
ARTN 129391-
页   码:
摘   要:
Even though there are many synthesized structures that can be used to combat corrosion during the acid pickling process, the problem's persistence prompts modern corrosion scientists to seek deeper insights into the field by synthesizing more and more interesting moieties for practical applications and their applied capabilities against corrosion. The inhibition impacts of two imidazole derivatives fused ring based on glycourils, namely, Glycouril (tetrahydroimidazo[4,5-d]imidazole-2,5(1 H,3 H)- dione) (3) and Dithioglycouril (tetrahydroimidazo[4,5-d] imidazole-2,5(1 H,3 H)-dithione) (7)] on copper corrosion were investigated in stagnant aerated 1 M HNO3 solutions at 25 degrees C. Surprisingly, there is no report on using glycouril (IMD-O) and/or dithioglycuril (IMD-S) as corrosion inhibitors for copper in acidic environment. The action of corrosion inhibiting of copper in 1 M HNO3 for both compounds was explored by various electrochemical measurements, and the findings reveal that they all work as mixed-type corrosion inhibitors under the conditions that were studied. The results revealed the inhibitory effect of imidazole derivatives depends on their concentration. The examined imidazole derivatives displayed significant inhibitory efficiency (ex. 92.5 %) and played an important role in preventing copper corrosion in 1 M HNO3. The adsorption of the examined imidazole derivatives on copper surface in 1 M HNO3 is followed Langmuir isotherm model. AFM investigation revealed a considerable improvement in the copper surface in the presence of imidazole derivatives, which protected the surface by forming an inhibitive coating over the copper surface. Furthermore, DFT calculations and Monte Carlo simulations on the active form of the synthesized imidazole derivatives were performed.
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