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Corrosion Study of Mild Steel in Aqueous Sulfuric Acid Solution Using 4-Methyl-4H-124-Triazole-3-Thiol and 2-Mercaptonicotinic Acid—An Experimental and Theoretical Study

机译:4-甲基-4H-124-三唑-3-硫醇和2-巯基烟酸在硫酸水溶液中对低碳钢的腐蚀研究-实验和理论研究

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摘要

The corrosion behavior of mild steel in 0.1 M aqueous sulfuric acid medium has been studied using weight loss, potentiodynamic polarization measurements, quantum chemical calculations, and molecular dynamic simulations in the presence and absence of 4-methyl-4H-1,2,4-triazole-3-thiol and 2-mercaptonicotinic acid. Potentiodynamic measurements indicate that these compounds mostly act as mixed inhibitors due to their adsorption on the mild steel surface. The goal of the study was to use theoretical calculations to better understand the inhibition. Monte Carlo simulation was used to calculate the adsorption behavior of the studied molecules onto Fe (1 1 1) and Fe2O3 (1 1 1) surface. The molecules were also studied with the density functional theory (DFT), using the B3LYP functional in order to determine the relationship between the molecular structure and the corrosion inhibition behavior. More accurate adsorption energies between the studied molecules and iron or iron oxide were calculated by using DFT with periodic boundary conditions. The calculated theoretical parameters gave important assistance into the understanding the corrosion inhibition mechanism expressed by the molecules and are in full agreement with the experimental results.
机译:在存在和不存在4-甲基-4H-1,2,4-的情况下,使用失重,势能极化测量,量子化学计算和分子动力学模拟研究了低碳钢在0.1 M硫酸水溶液中的腐蚀行为。三唑-3-硫醇和2-巯基烟酸。电位动力学测量表明,由于这些化合物吸附在低碳钢表面上,因此它们主要充当混合抑制剂。该研究的目的是使用理论计算来更好地理解抑制作用。蒙特卡罗模拟用于计算所研究分子在Fe(1 1 1)和Fe2O3(1 1 1)表面上的吸附行为。还使用密度泛函理论(DFT),使用B3LYP泛函对分子进行了研究,以确定分子结构与缓蚀性能之间的关系。通过使用具有周期性边界条件的DFT,可以计算出所研究的分子与铁或氧化铁之间更精确的吸附能。计算得到的理论参数为理解分子所表现出的缓蚀机理提供了重要的帮助,与实验结果完全吻合。

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