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New triazepine carboxylate derivatives: correlation between corrosion inhibition property and chemical structure

机译:新的三氮杂羧酸甲酯衍生物:腐蚀抑制性能与化学结构之间的相关性

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In this investigation, attempts have been made to study the corrosion inhibition properties of three new triazepine carboxylate compounds for mild steel in 1.0?M hydrochloric acid medium. The evaluation was carried out using mass loss, electrochemical impedance spectroscopy and polarization curves measurement. Impedance diagrams and Bode plots for uninhibited and inhibited systems were analyzed using Zview program. The fitted data observed trails in nearly the same pattern as the experimental results. It is showed that triazepine carboxylate compounds are very good inhibitors for mild steel corrosion in 1.0?M hydrochloric acid medium which act as mixed-type inhibitors. So, the inhibition efficiency was increased with inhibitor concentration in the order Cl–Me–CN?>?Me–CN?>?Cl–Me–CO_(2)Et which depended on their molecular structures. Electrochemical impedance spectroscopy showed that all compounds act by the formation of a protective film at the metal surface. Surface analyses via SEM and Optical 3D profilometry were used to investigate the morphology of the steels before and after immersion in 1.0?M HCl solution containing inhibitors. The correspondence between inhibition property and molecular structure of the triazepine carboxylate compounds was investigated, using density functional theory (DFT). Experimental and DFT study was further supported by molecular dynamic simulations study.
机译:在该研究中,已经尝试研究3.0·m盐酸介质中三种新的三氮杂羧酸甲酯化合物的腐蚀抑制性能。使用质量损失,电化学阻抗光谱和极化曲线测量进行评价。使用zview程序分析了用于不滥用和禁止系统的阻抗图和凸形图。拟合的数据观察到几乎与实验结果几乎相同的图案。结果表明,三氮杂羧酸盐化合物是一种非常好的抑制剂,用于在1.0·m盐酸介质中的温和钢腐蚀,其充当混合型抑制剂。因此,抑制效率随抑制剂浓度增加了Cl-ME-CN?>-CNα10-CN·Δ>ΔCl-ME-CO_(2)ET,其依赖于其分子结构。电化学阻抗光谱显示所有化合物通过在金属表面形成保护膜来作用。通过SEM和光学3D轮廓测定的表面分析来研究含有抑制剂的1.0℃溶液之前和浸没前后钢的形态。使用密度函数理论(DFT)研究了三氮杂羧酸甲酯化合物的抑制性能与分子结构的对应关系。通过分子动态模拟研究进一步支持了实验和DFT研究。

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