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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Electropolymerization of phenol, o-nitrophenol and o-methoxyphenol on gold and carbon steel materials and their corrosion protection effects
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Electropolymerization of phenol, o-nitrophenol and o-methoxyphenol on gold and carbon steel materials and their corrosion protection effects

机译:苯酚,邻硝基苯酚和邻甲氧基苯酚在金钢和碳钢材料上的电聚合及其防腐蚀作用

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摘要

This paper reports the results of a comparative study of the electropolymerization of phenol, o-methoxyphenol and o-nitrophenol by cyclic voltammetry on gold and carbon steel electrodes. The aim of this work is to synthesize homogeneous and adherent polyphenols film to protect carbon steel material against corrosion. Gold electrodes were used to optimize the experimental parameters such as the initial concentration of the monomer, the pH, the potential scan rate and the anodic potential limit value. Results showed that poly-o-metoxyphenol synthesized on carbon steel using optimized parameters obtained from gold electrode leads to more effective protection. This is probably due to the electron-donating mesomeric effet (+M) of the methoxy group which stabilized the phenoxy radicals obtained during the monoelectronic discharge of o-methoxyphenol. The best electropolymerization conditions involved an aqueous solution of 0.04 M o-methoxyphenol at pH 10.7, 5 mV s~(-1) potential scan rate and an anodic potential limit (1.64 V/SCE) avoiding the degradation of the polymer film. The application of these conditions on steel electrodes leads to the formation of a stable, adherent and inhomogeneous film of polymer. A polymerization mechanism was proposed with consideration of results from literature.
机译:本文报道了循环伏安法在金和碳钢电极上苯酚,邻甲氧基苯酚和邻硝基苯酚电聚合的比较研究结果。这项工作的目的是合成均匀且粘附的多酚薄膜,以保护碳钢材料免受腐蚀。金电极用于优化实验参数,例如单体的初始浓度,pH,电势扫描速率和阳极电势极限值。结果表明,使用从金电极获得的优化参数在碳钢上合成的聚邻甲氧基苯酚可以提供更有效的保护。这可能是由于甲氧基的给电子介孔效应(+ M)稳定了邻甲氧基苯酚单电子放电过程中获得的苯氧基。最佳的电聚合条件包括在pH为10.7的条件下使用0.04 M邻甲氧基苯酚的水溶液,5 mV s〜(-1)的电势扫描速率和阳极电势极限(1.64 V / SCE),以避免聚合物膜降解。将这些条件施加到钢电极上会导致形成稳定,粘附和不均匀的聚合物膜。考虑到文献结果,提出了一种聚合机理。

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