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首页> 外文期刊>International Journal of Electrochemistry >Corrosion Inhibition Effect of 4-(2-Diethylamino-Ethylsulfonyl)-Phthalonitrile and 4,5-Bis(Hexylsulfonyl)-Phthalonitrile
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Corrosion Inhibition Effect of 4-(2-Diethylamino-Ethylsulfonyl)-Phthalonitrile and 4,5-Bis(Hexylsulfonyl)-Phthalonitrile

机译:4-(2-二乙氨基-乙基磺酰基)-邻苯二甲腈和4,5-双(己基磺酰基)-邻苯二甲腈的缓蚀作用

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摘要

Inhibition of stainless steel corrosion in a 3.0 M NaCl solution by 4-(2-diethylamino-ethylsulfanyl)-phthalonitrile (DAESPN) and 4,5-bis(hexylsulfonyl)-phthalonitrile (Bis-HSPN) was investigated by polarization and electrochemical impedance spectroscopy (EIS) measurements. The values of cathodic (βc) and anodic (βa) Tafel slopes,icorr,Ecorr, corrosion rate (CR), and inhibition efficiences (IE%) obtained from polarization curves and polarization resistance (RP), double-layer capacitance (Cdl), specific capacitance (Csp) values were obtained from EIS. Double-layer capacitance differences in the presence and absence of inhibitors were also obtained from EIS measurements as suggested in the literature in order to investigate the interaction of them with metal surface. Results show that both DAESPN and Bis-HSPN are effective in cathodic reaction. Impedance measurements suggest higher surface coverage for DAESPN. The interaction between the inhibitor and the stainless steel was investigated by the adsorption isotherm. Langmuir adsorption isothermKadswas applied andΔGvalues were obtained and found as4.32×10−4,1.17×10−4and 9.2 kJ, 12.5 kJ for DAESPN and Bis-HSPN, respectively, which suggests the electrostatic interaction between charged metal surface and charged organic molecules.
机译:通过极化和电化学阻抗谱研究了4-(2-二乙基氨基-乙基硫烷基)-邻苯二甲腈(DAESPN)和4,5-双(己基磺酰基)-邻苯二甲腈(Bis-HSPN)对3.0 M NaCl溶液中不锈钢腐蚀的抑制作用(EIS)测量。从极化曲线和极化电阻(RP),双层电容(Cdl)获得的阴极(βc)和阳极(βa)塔菲尔斜率,icorr,Ecorr,腐蚀速率(CR)和抑制效率(IE%)的值从EIS获得比电容(Csp)值。如文献中所建议,也可以通过EIS测量获得在存在和不存在抑制剂的情况下的双层电容差异,以研究它们与金属表面的相互作用。结果表明,DAESPN和Bis-HSPN均对阴极反应有效。阻抗测量表明DAESPN具有更高的表面覆盖率。通过吸附等温线研究了抑制剂与不锈钢之间的相互作用。应用Langmuir吸附等温线Kads,获得ΔG值,发现DAESPN和Bis-HSPN的ΔG值分别为4.32×10-4、1.17×10-4和9.2 kJ,12.5 kJ,这表明带电金属表面和带电有机分子之间存在静电相互作用。

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