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首页> 外文期刊>Applied Surface Science >Choline based ionic liquids as sustainable corrosion inhibitors on mild steel surface in acidic medium: Gravimetric, electrochemical, surface morphology, DFT and Monte Carlo simulation studies
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Choline based ionic liquids as sustainable corrosion inhibitors on mild steel surface in acidic medium: Gravimetric, electrochemical, surface morphology, DFT and Monte Carlo simulation studies

机译:基于胆碱的离子液体作为酸性介质在低碳钢表面上的可持续腐蚀抑制剂:重量,电化学,表面形态,DFT和蒙特卡洛模拟研究

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摘要

The adsorption tendency of choline based ionic liquids namely, 2-hydroxyethyl-trimethyl-ammonium chloride [Chl] [Cl], 2-hydroxyethyl-trimethyl-ammonium iodide [Chl] [l] and 2-hydroxyethyl-trimethyl-ammonium acetate [Chl] [Ac] on mild steel surface in 1 M HCl has been demonstrated using experimental and theoretical approaches. Weight loss analysis showed that inhibition efficiencies of [Chl] [Cl], [Chl] [I] and [Chl] [Ac] increases with their concentrations. The maximum efficiencies of are in the order; [Chl] [Cl] (92.04%) [Chl] [I] (96.02%) [Chl] [Ac] (96.59%) at 17.91 x 10(-4) M concentration. Electrochemical analyses (OCP, PDP and EIS) data provide good support to the weight loss study and showed that investigated ionic liquids behaved as interfacial and mixed type corrosion inhibitors. The adsorption of [Chl] [Cl], [Chl] [I] and [Chl] [Ac] at mild steel/1 M HCl (electrolyte) interfaces obeyed the Temkin adsorption isotherm. The adsorption of studied ionic liquids on the metallic surface was further supported by SEM-EDX and AFM methods. DFT and Monte Carlo (MC) Simulations based computational approaches were undertaken to support the experimental findings. DFT studies revealed that [Chl] [Cl], [Chl] [I] and [Chl] [Ac] interact with metallic surface through donor-acceptor interactions in which the anionic parts act as electron donor (HOMO) and cationic parts behaved as electron acceptor (LUMO). The MC simulations study showed that studied ionic liquids adsorb spontaneously on mild steel surface and their effectiveness depends upon nature of anionic moieties. The experimental and theoretical analyses show that the investigated inhibition efficiencies of studied ionic liquids followed the order: [Chl] [Cl] [Chl] [I] [Chl][Ac].
机译:胆碱基离子液体即2-羟乙基三甲基氯化铵[Chl] [Cl],2-羟乙基三甲基碘化铵[Chl] [l]和2-羟乙基三甲基乙酸铵[Chl]的吸附趋势使用实验和理论方法证明了在1 M HCl中低碳钢表面的[Ac]。体重减轻分析表明,[Chl] [Cl],[Chl] [I]和[Chl] [Ac]的抑制效率随它们的浓度而增加。的最大效率按顺序排列; [Chl] [Cl](92.04%)<[Chl] [I](96.02%)<[Chl] [Ac](96.59%),浓度为17.91 x 10(-4)M。电化学分析(OCP,PDP和EIS)数据为重量减轻研究提供了良好的支持,并表明所研究的离子液体具有界面和混合型缓蚀剂的作用。在低碳钢/ 1 M HCl(电解质)界面上的[Chl] [Cl],[Chl] [I]和[Chl] [Ac]吸附符合Temkin吸附等温线。 SEM-EDX和AFM方法进一步支持了研究的离子液体在金属表面上的吸附。 DFT和蒙特卡洛(MC)基于仿真的计算方法被用来支持实验结果。 DFT研究表明,[Chl] [Cl],[Chl] [I]和[Chl] [Ac]通过供体-受体相互作用与金属表面相互作用,其中阴离子部分充当电子给体(HOMO),而阳离子部分的行为类似于电子受体(LUMO)。 MC模拟研究表明,所研究的离子液体自发地吸附在低碳钢表面上,其有效性取决于阴离子部分的性质。实验和理论分析表明,所研究的离子液体的抑制效率遵循以下顺序:[Chl] [Cl] <[Chl] [I] <[Chl] [Ac]。

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