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Monitoring underlying epoxy-coated St-37 corrosion via 8-hydroxyquinoline as a fluorescent indicator

机译:通过8-羟基喹啉作为荧光指示剂监测潜在的环氧涂层St-37腐蚀

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In the present study, successful performance of 8-hydroxyquinoline (8-HQ) as a ferric ion sensitive indicator is described. 8-HQ was used in epoxy coating because of its desirable properties. It doesn't exhibit premature fluorescence when mixed with coating precursors. Additionally it shows fluorescence turn-on mechanism upon chelate formation with Fe2+/Fe3+ ions produced during anodic reaction. The effect of different concentrations of 8-HQ (0.05, 0.1, 0.5 and 1 wt.%) incorporated in the epoxy coating on corrosion detection as well as optical and electrochemical behavior of the applied coating were studied. The fluorescence property of 8-HQ/Fe3+ solutions was evaluated by using fluorometer. The UV-Visible spectroscopy was used to investigate the effect of 8-HQ presence in the coating on transparency of the free films of the samples. The corrosion detection was performed by fluorescence microscope and the anti-corrosion performance of coated samples containing different concentrations of 8-HQ was studied using salt spray standard test and electrochemical impedance spectroscopy (EIS). The results of UV-Visible spectroscopy demonstrated that increasing 8-HQ concentration causes a slight decrease in coating transparency. According to the results of electrochemical impedance spectroscopy (EIS) measurements, the polarization resistance of the coated St-37 sample containing 0.1 wt.% 8-HQ was about 10(9) Ohm cm(2) after 6 weeks immersion in corrosive electrolyte, while St-37 plates coated with other 8-HQ concentrations showed decreased resistance levels of about 10(6) Ohm cm(2), during the same immersion period. Based on fluorescence microscopic investigation, as a result of incorporating 8-HQ into the epoxy matrix, fluorescence could be observed in regions where Fe2+/Fe3+ ions were produced through anodic reactions. This method is capable of detecting corrosion in situ at early stages before the metal surface suffers serious damages. (C) 2018 Published by Elsevier B.V.
机译:在本研究中,描述了8-羟基喹啉(8-HQ)作为铁离子敏感指示剂的成功性能。 8-HQ因其理想的性能而用于环氧涂料。与涂料前体混合后不会显示过早的荧光。另外,它显示出与阳极反应过程中产生的Fe2 + / Fe3 +离子形成螯合物后的荧光开启机制。研究了环氧涂料中掺入的不同浓度的8-HQ(0.05、0.1、0.5和1 wt。%)对腐蚀检测以及所用涂料的光学和电化学行为的影响。使用荧光计评估8-HQ / Fe3 +溶液的荧光性质。紫外可见光谱用于研究涂层中8 HQ存在对样品自由膜透明性的影响。通过荧光显微镜进行腐蚀检测,并使用盐雾标准测试和电化学阻抗谱(EIS)研究了含有不同浓度的8-HQ的涂层样品的耐腐蚀性能。紫外-可见光谱的结果表明,增加8-HQ浓度会导致涂层透明度略有下降。根据电化学阻抗谱(EIS)的测量结果,在腐蚀性电解液中浸泡6周后,含0.1 wt。%8-HQ的涂层St-37样品的极化电阻约为10(9)Ohm cm(2),而在相同的浸入期间,涂有其他8-HQ浓度的St-37板的电阻水平降低了约10(6)Ohm cm(2)。基于荧光显微镜研究,由于将8-HQ掺入环氧基质中,可以在通过阳极反应产生Fe2 + / Fe3 +离子的区域观察到荧光。该方法能够在金属表面遭受严重破坏之前的早期阶段就地检测腐蚀。 (C)2018由Elsevier B.V.发布

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