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Anticorrosive Effects of Some Thiophene Derivatives Against the Corrosion of Iron: A Computational Study

机译:某些噻吩衍生物对铁腐蚀的防腐作用:计算研究

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摘要

It is known that iron is one of the most widely used metals in industrial production. In this work, the inhibition performances of three thiophene derivatives on the corrosion of iron were investigated in the light of several theoretical approaches. In the section including DFT calculations, several global reactivity descriptors such as EHOMO, ELUMO, ionization energy (I), electron affinity (A), HOMO-LUMO energy gap (ΔE), chemical hardness (η), softness (σ), as well as local reactivity descriptors like Fukui indices, local softness, and local electrophilicity were considered and discussed. The adsorption behaviors of considered thiophene derivatives on Fe(110) surface were investigated using molecular dynamics simulation approach. To determine the most active corrosion inhibitor among studied thiophene derivatives, we used the principle component analysis (PCA) and agglomerative hierarchical cluster analysis (AHCA). Accordingly, all data obtained using various theoretical calculation techniques are consistent with experiments.
机译:众所周知,铁是工业生产中使用最广泛的金属之一。在这项工作中,根据几种理论方法研究了三种噻吩衍生物对铁的缓蚀性能。在包含DFT计算的部分中,几个全局反应性描述符如EHOMO,ELUMO,电离能(I),电子亲和力(A),HOMO-LUMO能隙(ΔE),化学硬度(η),柔软度(σ)以及诸如Fukui指数,局部柔软性和局部亲电性等局部反应性描述符均已得到考虑和讨论。使用分子动力学模拟方法研究了噻吩衍生物在Fe(110)表面的吸附行为。为了确定研究的噻吩衍生物中活性最高的缓蚀剂,我们使用了主成分分析(PCA)和聚集层次聚类分析(AHCA)。因此,使用各种理论计算技术获得的所有数据均与实验一致。

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