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Diaza-adamantane derivatives as corrosion inhibitor for copper in nitric acid medium

机译:二氮杂金刚烷衍生物作为硝酸介质中铜的腐蚀抑制剂

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摘要

The effect of newly synthesized 6-hydroxy-5,7-diphenyl-1,3-diazaadamantane (HDDA) and 5,7-diphenyl-1,3-diazaadamantan-6-one (DDA) against the corrosion of copper in 1 M HNO3 solution was investigated using potentiodynamic polarization, electrochemical impedance spectroscopy (EIS) and weight loss measurements. These measurements show that the inhibition efficiency (IE %) obtained by these compounds increased by increasing their concentrations, and maximum IE % to 90.84 % for HDDA and 89.87 % for DDA were found at 300 ppm. Data obtained from EIS studies were analyzed by an equivalent circuit model. EIS plots indicated that the inhibitor performance depends on the adsorption of the molecules on the metal surface. Polarization measurements showed that both HDDA and DDA are mixed-type but predominantly cathodic in 1 M HNO3 solution. The adsorption of inhibitors on the copper surface from the nitric acid follows the Langmuir adsorption isotherm with a negative value of free energy, and these values indicated that adsorption of both HDDA and DDA molecules adsorbs physically on the copper surface. The surface morphology was examined by scanning electron microscope and atomic force microscope. Further, theoretical calculations were carried out and relationships between computed parameters and experimental IE % were discussed. All the results confirmed that e HDDA showed better efficiency in 1 M HNO3 compared to DDA.
机译:新合成的6-羟基-5,7-二苯基-1,3-二氮杂金刚烷(HDDA)和5,7-二苯基-1,3-二氮杂金刚烷-6-一(DDA)对1M铜腐蚀的影响使用电位动力学极化,电化学阻抗谱(EIS)和失重测量研究了HNO3溶液。这些测量表明,通过增加它们的浓度,由这些化合物获得的抑制效率(IE%)增加,并且在300ppm下发现最大的IE%对于HDDA为90.84%,对于DDA为89.87%。通过等效电路模型分析了从EIS研究获得的数据。 EIS图表明抑制剂的性能取决于分子在金属表面上的吸附。极化测量结果表明,HDDA和DDA均为混合型,但在1 M HNO3溶液中主要为阴极。硝酸对铜表面抑制剂的吸附遵循自由能为负值的朗缪尔吸附等温线,这些值表明HDDA和DDA分子的吸附均物理吸附在铜表面上。通过扫描电子显微镜和原子力显微镜检查表面形态。此外,进行了理论计算,并讨论了计算参数与实验IE%之间的关系。所有结果证实,与DDA相比,e HDDA在1 M HNO3中显示出更好的效率。

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