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首页> 外文期刊>Electrochimica Acta >Electrochemical corrosion protection studies of aniline-capped aniline trimer-based electroactive polyurethane coatings
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Electrochemical corrosion protection studies of aniline-capped aniline trimer-based electroactive polyurethane coatings

机译:苯胺封端的苯胺三聚体电活性聚氨酯涂料的电化学腐蚀防护研究

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摘要

In this paper, the successful preparation of electroactive polyurethane (EPU) coatings containing amine-capped aniline trimer (ACAT) is presented for the first time. To accomplish this, ACAT was synthesized by carrying out oxidative coupling reactions between aniline and para-phenylenediamine, after which it was characterized through Fourier-transformation infrared and UV-vis spectroscopy. Subsequently, a polyurethane (PU) prepolymer was prepared by polymerizing diisocyanate of 4,4-methylene-bis(cyclohexylisocyanate), diol of polycaprolactone, and triol of phloroglucinol at 60℃ for 3 h. EPU was then produced by allowing the as-prepared polyurethane prepolymer to react with ACAT under suitable conditions. Non-electroactive polyurethane (NEPU) coating was also prepared for the control experiments. Based on a series of electrochemical corrosion measurements, EPU in the form of a coating was found to possess a clearly enhanced corrosion protection effect when compared to PU. The observed enhancement of the anticorrosion effect of EPU on a metallic substrate when compared to that of NEPU may have been caused by the redox catalytic capability of ACAT present in EPU, inducing the formation of a densely passive metal oxide layer (i.e., Fe_2O_3 and Fe_3O_4), as indicated by the results of scanning electron microscopy and electron spectroscopy for chemical analysis. The redox behavior of the EPU coatings was further analyzed and compared to that of the NEPU coating by cyclic voltammetric (CV) studies.
机译:本文首次成功地制备了含胺基苯胺三聚体(ACAT)的电活性聚氨酯(EPU)涂料。为此,通过在苯胺和对苯二胺之间进行氧化偶联反应来合成ACAT,然后通过傅立叶变换红外和紫外-可见光谱对其进行表征。随后,通过在60℃下将4,4-亚甲基双(环己基异氰酸酯)的二异氰酸酯,聚己内酯的二醇和间苯三酚的三醇聚合3小时来制备聚氨酯(PU)预聚物。然后通过使所制备的聚氨酯预聚物在合适的条件下与ACAT反应来生产EPU。还制备了非电活性聚氨酯(NEPU)涂层用于对照实验。根据一系列电化学腐蚀测量,与聚氨酯相比,涂层形式的EPU具有明显增强的腐蚀防护效果。与NEPU相比,观察到的EPU在金属基材上的防腐效果增强可能是由于EPU中存在的ACAT的氧化还原催化能力所致,从而导致形成致密的钝化金属氧化物层(即Fe_2O_3和Fe_3O_4) ),如通过扫描电子显微镜和电子光谱进行化学分析的结果所示。通过循环伏安(CV)研究进一步分析了EPU涂层的氧化还原行为,并将其与NEPU涂层的氧化还原行为进行了比较。

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