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Electrochemical Obtaining and Corrosion Behavior of Zinc-Polyaniline (Zn-PANI) Hybrid Coatings

机译:锌 - 聚苯胺(Zn-Pani)杂交涂层的电化学获得和腐蚀行为

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摘要

Hybrid zinc-based coatings with embedded polyaniline (PANI) particles in the metal matrix are obtained in a one-step process via electrodeposition on low-carbon steel plates. The aim is directly to use the inhibitor properties of polyaniline for improved protection against corrosion in chloride containing medium (5% NaCl solution). PANI-particles (concentration of 0.025 g/L) are added to the starting zinc electrolyte in dispersed form—the latter being obtained via oxidation polymerization in the presence of stabilizers (polyvinyl pyrrolidone (PVP) or colloidal SiO2). Electrodeposition conditions are equal to those for obtaining an ordinary zinc coating. The surface morphology of the hybrid coatings before and after corrosion treatment in the model medium is characterized with SEM. The influence of the incorporated PANI/PVP- or PANI/SiO2-particles on the protective properties of the coatings is evaluated by the application of electrochemical (potentiodynamic polarization, open-circuit potential, polarization resistance, cyclic voltammetry) as well as X-ray based (X-ray diffraction and X-ray photoelectron spectroscopy) methods. A discussion and some conclusions about the reasons for the improved corrosion resistance and protective ability of the hybrid coatings in that model medium are proposed.
机译:通过电沉积在低碳钢板上的一步法中获得金属基质中的杂化锌基涂层。目的直接使用聚苯胺的抑制剂性质,以改善含氯化物中的腐蚀的保护(5%NaCl溶液)。将粉底颗粒(浓度为0.025g / L)加入到分散形式的起始锌电解质中 - 后者通过稳定剂存在(聚乙烯吡咯烷酮(PVP)或胶体SiO 2)中通过氧化聚合获得。电沉积条件等于获得普通锌涂层的条件。模型介质中腐蚀处理前后杂化涂层的表面形态的特征在于SEM。通过施加电化学(电位极化极化,开路电位,偏振,偏振,循环伏安,X射线,通过施加掺入的PANI / PVP-或PANI / SIO2-粒子对涂层保护性能的影响。基于(X射线衍射和X射线光电子能谱)方法。提出了关于杂合涂层在该模型介质中改善耐腐蚀性和保护能力的原因的讨论和一些结论。

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