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Influence of electrosynthesis potential on corrosion performance of polypyrrole coated stainless steel and its mechanism research

机译:电合成电位对聚吡咯涂层不锈钢腐蚀性能的影响及其机理研究

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摘要

The electrosynthesis process of conducting polymer on stainless steel was investigated and a two-step process was adopted to obtain polypyrrole (PPy) films at low potentials. The effects of applied potentials on the electrochemical, structural and protective properties of PPy films have been explored using scanning electron microscopy, infrared spectroscopy, cyclic voltammetry, open circuit potential and potentiodynamic polarisation. Films electrodeposited at lower potentials have more homogeneous morphology and less overoxidation. The electroactivities decrease as applied potentials increase. Polypyrrole films exhibit effective inhibition of corrosion for stainless steel in 3⋅5%NaCl solution. Applying lower potential for the synthesis improves the anticorrosive efficiency of PPy film. The anodic current during polarisation process for stainless steel/PPy is mainly ascribed to the dissolution of stainless steel at pinhole defects for initial immersion, and to PPy oxidation after short time immersion.
机译:研究了导电聚合物在不锈钢上的电合成过程,并采用两步法制备了低电位的聚吡咯(PPy)薄膜。使用扫描电子显微镜,红外光谱,循环伏安法,开路电势和电位动力学极化,已探索了施加电势对PPy膜的电化学,结构和保护性能的影响。在较低电势下电沉积的薄膜具有更均匀的形态和更少的过氧化。电活性随施加电势的增加而降低。聚吡咯膜在3⋅5%NaCl溶液中对不锈钢具有有效的腐蚀抑制作用。施加较低的合成电位可提高PPy膜的防腐效率。不锈钢/ PPy极化过程中的阳极电流主要归因于不锈钢在针孔缺陷处的溶解以进行初始浸入,以及短时间浸入后PPy的氧化。

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