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Atomistic Simulation: A Unique and Powerful Computational Tool for Corrosion Inhibition Research

机译:原子模拟:用于腐蚀抑制研究的独特而强大的计算工具

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摘要

It is difficult to understand the atomistic information on the interaction at the metal/corrosion inhibitor interface experimentally which is a key to understanding the mechanism by which inhibitors prevent the corrosion of metals. Atomistic simulations (molecular dynamics and Monte Carlo) are mostly performed in corrosion inhibition research to give deeper insights into the mechanism of inhibition of corrosion inhibitors on metal surfaces at the atomic and molecular time scales. A lot of works on the use of molecular dynamics and Monte Carlo simulation to investigate corrosion inhibition phenomenon have appeared in the literature in recent times. However, there is still a lack of comprehensive review on the understanding of corrosion inhibition mechanism using these atomistic simulation methodologies. In this review paper, we first of all introduce briefly some important molecular modeling simulations methods. Thereafter, the basic theories of molecular dynamics and Monte Carlo simulations are highlighted. Several studies on the use of atomistic simulations as a modern tool in corrosion inhibition research are presented. Somemechanistic and energetic information on how organic corrosion inhibitors interact with iron and copper metals are provided. This atomic and molecular level information could aid in the design, synthesis and development of new and novel corrosion inhibitors for industrial applications.
机译:很难通过实验了解有关金属/缓蚀剂界面相互作用的原子信息,这是理解缓蚀剂防止金属腐蚀机理的关键。原子模拟(分子动力学和蒙特卡洛)主要在腐蚀抑制研究中进行,以便在原子和分子时间尺度上更深入地了解金属表面上腐蚀抑制剂的抑制机理。近年来,有关分子动力学和蒙特卡罗模拟研究腐蚀抑制现象的大量工作已出现在文献中。然而,对于使用这些原子模拟方法的腐蚀抑制机理的理解仍然缺乏全面的综述。在这篇综述文章中,我们首先简要介绍一些重要的分子建模模拟方法。此后,重点介绍了分子动力学和蒙特卡洛模拟的基本理论。提出了一些关于使用原子模拟作为腐蚀抑制研究的现代工具的研究。提供了有关有机腐蚀抑制剂如何与铁和铜金属相互作用的一些力学和有效的信息。这些原子和分子水平的信息可以帮助设计,合成和开发用于工业应用的新型缓蚀剂。

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