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基于糖的N,N'-二癸基-N,N'-二葡糖酰胺乙二胺双子表面活性剂作为低碳钢在3.5%氯化钠溶液中的缓蚀剂——协同碘化钾添加剂的影响

Sugar based N,N'-didodecyl-N,N'digluconamideethylenediamine gemini surfactant as corrosion inhibitor for mild steel in 3.5% NaCl solution-effect of synergistic KI additive.

作者信息

Aslam Ruby, Mobin Mohammad, Aslam Jeenat, Lgaz Hassane

机构信息

Corrosion Research Laboratory, Department of Applied Chemistry, Faculty of Engineering and Technology, Aligarh Muslim University, Aligarh, 202002, India.

Laboratory of Applied Chemistry and Environment, ENSA, Ibn Zohr University, PO Box 1136, 80000, Agadir, Morocco.

出版信息

Sci Rep. 2018 Feb 27;8(1):3690. doi: 10.1038/s41598-018-21175-6.

Abstract

The inhibitory behaviour of non-ionic sugar based N,N'-didodecyl-N,N'-digluconamideethylenediamine gemini surfactant, designated as Glu(12)-2-Glu(12) on mild steel (MS) corrosion in 3.5% NaCl at 30-60 °C was explored using weight loss, PDP, EIS and SEM/EDAX/AFM techniques. The compound inhibited the corrosion of mild steel in 3.5% NaCl and the extent of inhibition was dependent on concentration and temperature. The inhibiting action of Glu(12)-2-Glu(12) is synergistically enhanced on addition of potassium iodide (KI) at all concentrations and temperatures. The inhibiting formulation comprising of 2.5 × 10 mM of Glu(12)-2-Glu(12) and 10 mM of KI exhibits an inhibition efficiency of 96.9% at 60 °C. Quantum chemical calculations and MD simulation were applied to analyze the experimental data and elucidate the adsorption behaviour and inhibition mechanism of inhibitors. MD simulation showed a nearly parallel or flat disposition for Glu(12)-2-Glu(12) molecules on the MS surface providing larger blocking area to prevent the metal surface from corrosion.

摘要

使用失重法、动电位极化曲线(PDP)、电化学阻抗谱(EIS)以及扫描电子显微镜/能谱仪/原子力显微镜(SEM/EDAX/AFM)技术,研究了非离子型糖基N,N'-二(十二烷基)-N,N'-二(葡萄糖酰胺基)乙二胺双子表面活性剂(命名为Glu(12)-2-Glu(12))在30至60°C的3.5%氯化钠溶液中对低碳钢(MS)腐蚀的抑制行为。该化合物抑制了低碳钢在3.5%氯化钠溶液中的腐蚀,抑制程度取决于浓度和温度。在所有浓度和温度下,添加碘化钾(KI)后,Glu(12)-2-Glu(12)的抑制作用均得到协同增强。由2.5×10 mM的Glu(12)-2-Glu(12)和10 mM的KI组成的抑制配方在60°C时的抑制效率为96.9%。应用量子化学计算和分子动力学(MD)模拟来分析实验数据,并阐明抑制剂的吸附行为和抑制机理。MD模拟表明,Glu(12)-2-Glu(12)分子在低碳钢表面呈近乎平行或扁平的排列,提供了更大的阻挡面积,以防止金属表面腐蚀。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddd9/5829231/6302aa04c77f/41598_2018_21175_Fig1_HTML.jpg

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