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Dataset for the selection of electrolytes for Electropolymerization of aniline

机译:用于选择苯胺电解质的电解质的数据集

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The most investigated conducting polymer (CP) is polyaniline (PANI)), a promising polymer due to its excellent environmental stability, simplicity of synthesis, and high electrical conductivity . In corrosion protection applications, the PANI film has shown promising potential in protecting active metals such as iron by acting as physical barrier coatings, as a primer layer and as component in a multi-layer coating system . The PANI has an excellent potential to replace the toxic metal, such as chromates, in corrosion protection and is considered a green anti-corrosion candidate . The electrochemical synthesis of PANI coatings on active metals is accomplished by the dissolution of the metal at a potential lower than the monomer oxidation potential . Therefore, electrochemical synthesis of PANI coatings on active metal requires a proper choice of the electrolyte and solvent that should strongly passivate the metal without hindering the electropolymerization process . The data reported here are obtained while the anodic polarization of mild steel (MS) is carried out in succinic acid, sulphanilic acid, sodium orthophosphate, sodium potassium tartrate (Na-K tartrate), and benzoic acid in 3:1 alcohol-water (BAW) solutions . However, the results of electrolytes sodium-potassium tartrate (Na-K tartrate) and benzoic acid in alcohol-water (BAW) are reported for the polymerization of aniline onto MS . The SEM image of MS sample polarized in 0.3?M oxalic acid solution and 0.1?M aniline in 0.3?M oxalic acid is reported as a dataset or a supplementary material of the main manuscript ‘The Effect of Electrolytes on the Coating of Polyaniline on Mild Steel by Electrochemical Methods and Its Corrosion Behaviour .’.
机译:由于其优异的环境稳定性,合成的简单性和高导电性,最具研究的导电聚合物(CP)是聚苯胺(PANI)),其具有优异的聚合物,以及具有高的合成的简单性和高导电性。在耐腐蚀应用中,PANI膜通过用作物理阻隔涂层,作为底漆层和多层涂料系统中的组分来保护诸如铁的活性金属如熨斗等有希望的电位。 Pani具有优异的潜力,可替代腐蚀保护中的毒性金属,例如铬酸盐,并被认为是绿色防腐候选者。通过在低于单体氧化潜力的电位下溶解金属的溶解来实现活性金属上的电化学合成。 Therefore, electrochemical synthesis of PANI coatings on active metal requires a proper choice of the electrolyte and solvent that should strongly passivate the metal without hindering the electropolymerization process .在这里报道的数据在琥珀酸,磺酸,正磷酸钠,酒石酸钠(Na-K​​酒石酸钠)中进行,在3:1醇 - 水中进行苯甲酸,磺酸,正磷酸钠,苯甲酸钠(Na-K​​酒石酸钠)而获得。 BAW)解决方案。然而,将电解质钠 - 酒石酸钠(Na-K​​酒石酸酯)和苯甲酸在醇 - 水(BAW)中的结果进行烷基苯胺的聚合。 MS样品的SEM图像在0.3·m草酸溶液中偏振,0.1μm苯胺在0.3μmOxalic酸中被报告为主要稿件的数据集或辅助材料'电解质对温和的聚苯胺涂层的影响。通过电化学方法及其腐蚀行为的钢。“

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