DFT and Monte Carlo Simulations on the Corrosion Inhibitive Potentials of some Furan-based Carbohydrazide Derivatives

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引用次数: 2

Abstract

Corrosion is a serious concern for the oil and construction industries. Controlling corrosion, therefore, remains essential in a bid to reduce costs and save lives. The anti-corrosion potentials of seven Furan-based Carbohydrazide derivatives were investigated using the density functional theory (DFT) approach and Monte Carlo (MC) simulation. The energies of the frontier molecular orbitals (FMOs) like the lowest unoccupied molecular orbital energy (ELUMO), highest occupied molecular orbital energy (EHOMO), energy gap (Eg), number of transferred electrons (ΔN), and other reactivity descriptors were computed at DFT/B3LYP/6-31G(d) level of theory. The reactive sites were determined using Fukui indices and molecular electrostatic potential (MESP) surface analysis. The adsorption behavior of the compounds on the Fe (110) surface was investigated in hydrochloric acid solution using MC simulation. The compounds displayed corrosion inhibition potentials as rationalized by their high EHOMO, A, σ, ΔN, ΔEback-donation, and low Eg, ELUMO, I, and η. This is because they showed the ability to donate electrons to the metal’s d-orbital while also accepting electrons via back-donation, as revealed by the MESP surface analysis. The MC simulation revealed good interaction between the compounds (inhibitors) and Fe(110) surface in the HCl medium. These compounds could be used as inhibitors of corrosion in the manufacturing industries.
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呋喃基碳酰肼衍生物缓蚀电位的DFT和Monte Carlo模拟
腐蚀是石油和建筑行业的一个严重问题。因此,控制腐蚀对于降低成本和挽救生命至关重要。采用密度泛函(DFT)方法和蒙特卡罗(MC)模拟研究了7种呋喃基碳酰肼衍生物的抗腐蚀电位。在理论的DFT/B3LYP/6-31G(d)水平上计算了前沿分子轨道(FMOs)的能量,如最低未占据分子轨道能量(ELUMO)、最高已占据分子轨道能量(EHOMO)、能隙(Eg)、转移电子数(ΔN)和其他反应性描述符。利用Fukui指数和分子静电势(MESP)表面分析确定了反应位点。采用MC模拟研究了化合物在盐酸溶液中对Fe(110)表面的吸附行为。这些化合物具有较高的EHOMO、A、σ、ΔN、ΔEback-donation和较低的Eg、ELUMO、I和η,具有良好的缓蚀性能。这是因为正如MESP表面分析所揭示的那样,它们表现出了向金属的d轨道提供电子的能力,同时也通过回给电子接受电子。MC模拟表明,在HCl介质中,化合物(抑制剂)与Fe(110)表面具有良好的相互作用。这些化合物可在制造业中用作缓蚀剂。
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