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MPEC-IMI as an effective green inhibitor to protect Q235 steel in 0.5M HCl medium

机译:MPEC-IMI作为一种有效的绿色抑制剂,以保护Q235钢在0.5M HCl培养基中

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摘要

Imidazole (IMI)-based polyethylene glycol monomethyl ether (MPEC-IMI) as a novel green corrosion inhibitor was synthesized to protect the Q235 steel in 0.5M HCl corrosive medium at 318K. The inhibition performance of MPEC-IMI was investigated by weight loss measurement, the electrochemical method (Tafel and EIS) and surface analysis (SEM and EDX). The results reveal that the MPEC-IMI shows enhanced anticorrosion performance for carbon steel, which is attributed to the formation of the adsorptive protection film on the surface, and the type of adsorption basically obeys the Langmuir monolayer adsorption. Furthermore, when the concentration of MPEC-IMI is 300mgL(-1), the corrosion inhibition efficiency can reach up to 92.00%. In support of further study of the corrosion inhibition behavior by virtue of quantum chemical calculation and molecular dynamics simulations, the results show that the MPEC-IMI molecule has high reactivity and strong interaction on the iron surface.
机译:基于新型绿色腐蚀抑制剂的咪唑(IMI)基础聚乙二醇单甲基醚(MPEC-IMI),以保护Q235钢在0.5M HCL腐蚀性培养基中以318K保护。 通过减肥测量,电化学方法(Tafel和EIS)和表面分析(SEM和EDX)研究了MPEC-IMI的抑制性能。 结果表明,MPEC-IMI显示了碳钢的增强的防腐性能,这归因于表面上的吸附保护膜,并且吸附的类型基本上遵守Langmuir单层吸附。 此外,当MPEC-IMI的浓度为300mg(-1)时,腐蚀抑制效率可达92.00%。 为了通过量子化学计算和分子动力学模拟进一步研究腐蚀抑制行为,结果表明,MPEC-IMI分子具有高反应性和铁表面的强相互作用。

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