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Corrosion studies of PPy/Ni organic–inorganic hybrid bilayer coatings on commercial carbon steel

机译:商用碳钢上PPy / Ni有机-无机杂化双层涂层的腐蚀研究

摘要

© 2014, Springer-Verlag Berlin Heidelberg. Electrodeposition of polypyrrole (PPy) was achieved on AISI 1018 carbon steel (CS) using a constant potential regime and cyclic voltammetry techniques evaluating different synthesis parameters, in monomer-containing oxalic acid solutions. Thereafter, CS PPy/Ni bilayer films were produced by Ni deposition onto PPy films using a potentiostatic method. The electrochemical performance of PPy/Ni-coated carbon steel systems was investigated in 3.0 wt% NaCl solutions. For this purpose, scanning Kelvin probe (SKP), open-circuit potential (E), polarization curves, and cyclic voltammetry techniques were used. The influence of electro-synthesis method and parameters were analyzed. It was found that the deviation in the Volta potentials is correlated to the interfacial interaction between the PPy/Ni bilayer coating and substrate. Considering both experimental methods to obtain PPy/Ni coatings, a more effective protection against corrosion can be formed when potentiodynamic (cyclic voltammetry) and potentiostatic techniques are combined.
机译:©2014,施普林格出版社柏林海德堡。在含单体的草酸溶液中,使用恒电位方案和循环伏安技术评估了不同的合成参数,在AISI 1018碳钢(CS)上实现了聚吡咯(PPy)的电沉积。此后,通过使用恒电位法将Ni沉积到PPy膜上来生产CS PPy / Ni双层膜。在3.0wt%的NaCl溶液中研究了PPy / Ni涂层碳钢体系的电化学性能。为此,使用了扫描开尔文探针(SKP),开路电势(E),极化曲线和循环伏安技术。分析了电合成方法和参数的影响。已经发现,Volta电势的偏差与PPy / Ni双层涂层和基底之间的界面相互作用有关。考虑到获得PPy / Ni涂层的两种实验方法,当将恒电位(循环伏安法)和恒电位技术结合使用时,可以形成更有效的防腐蚀保护。

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