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On the development of polypyrrole coatings with self-healing properties for iron corrosion protection

机译:具有自修复性能的聚吡咯涂层对铁腐蚀防护的开发

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摘要

This paper presents studies on the efficacy and on the limits of polypyrrole (Ppy) doped with either MoO_4~(2-) or [PMo_(12)O_(40)]~(3-) as self-healing corrosion protecting coatings. The kinetics of the cathodic delamination were studied by means of the Scanning Kelvin Probe (SKP). This method, in combination with cyclic voltammetry, UV-visible spectroscopy (UV-vis) and X-ray photoelectron spectroscopy (XPS), shows a potential driven anion release from the Ppy coating that results in an inhibition of the corrosion process taking place in the defect. Thus, an intelligent release of inhibitor occurs only when the potential at the interface decreases. Inhibitor anions are released only due to an active defect. However, the release mechanism can be easily negatively affected by the presence of small cations and/or by too high pH values at the buried interface. Hence, such a self-healing coating has to be carefully designed in order to ensure an effective performance.
机译:本文介绍了掺有MoO_4〜(2-)或[PMo_(12)O_(40)]〜(3-)作为自修复腐蚀防护涂层的聚吡咯(Ppy)的功效和限制。通过扫描开尔文探针(SKP)研究了阴极分层的动力学。该方法与循环伏安法,紫外可见光谱(UV-vis)和X射线光电子能谱(XPS)结合使用,显示了从Ppy涂层释放阴离子的潜在驱动,从而抑制了腐蚀过程的发生。缺陷。因此,仅当界面电位降低时才发生抑制剂的智能释放。抑制剂阴离子仅由于活性缺陷而释放。但是,释放机理很容易受到小阳离子的存在和/或掩埋界面pH值太高的负面影响。因此,必须仔细设计这种自愈涂层,以确保有效的性能。

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