首页> 外文期刊>Russian journal of electrochemistry >Anilinium 5-sulfosalicylate electropolymerization on mild steel from an aqueous solution of sodium 5-sulfosalicylate/disodium 5-sulfosalicylate
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Anilinium 5-sulfosalicylate electropolymerization on mild steel from an aqueous solution of sodium 5-sulfosalicylate/disodium 5-sulfosalicylate

机译:5-磺基水杨酸钠/ 5-磺基水杨酸二钠水溶液在低碳钢上进行5-磺基水杨酸苯胺的电聚合

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摘要

Aniline is electropolymerized on bare and chemically pretreated mild steel from an aqueous solution of 0.10 M anilinium 5-sulfosalicylate in 0.20 M sodium 5-sulfosalicylate/0.20 M disodium 5-sulfosalicylate buffer as the supporting electrolyte, at room temperature. At constant anodic potential black poly(anilinium 5-sulfosalicylate) (PANISSA) films are obtained on bare mild steel and characterized by IR spectroscopy, electrochemical impedance spectroscopy (EIS) and scanning electron microscopy (SEM). IR spectroscopic analysis confirms typical polyaniline structure with 1,4-disubstituted aromatic nuclei and incorporation of sulfosalicylate anions as dopants. Adhesion of PANISSA films is significantly improved when the mild steel electrode surface is chemically pretreated by 0.10 M ammonium peroxydisulfate aqueous solution. The HZ spectra of the films obtained on chemically pretreated mild steel surface indicate an interaction between PANISSA and products of the mild steel oxidation by peroxydisulfate. The SEM images show differences in morphology between PANISSA films synthesized on bare and chemically pretreated mild steel surface. The efficient anticorrosion behavior of adherent PANISSA film on chemically pretreated mild steel is proved by EIS.
机译:在室温下,将苯胺在0.10 M 5-磺基水杨酸苯胺在0.20 M 5-磺基水杨酸钠/0.20 M 5-磺基水杨酸二钠缓冲液中的水溶液中作为支持电解质,在裸露且经过化学预处理的低碳钢上进行电聚合。在恒定的阳极电位下,在裸露的低碳钢上获得黑色聚(5-磺基水杨酸苯甲酸铵)(PANISSA)薄膜,并通过红外光谱,电化学阻抗谱(EIS)和扫描电子显微镜(SEM)对其进行表征。红外光谱分析证实了典型的聚苯胺结构,具有1,4-二取代的芳香核,并掺入了磺基水杨酸酯阴离子作为掺杂剂。当用0.10 M过氧二硫酸铵水溶液化学预处理低碳钢电极表面时,PANISSA膜的附着力得到显着改善。在经过化学预处理的低碳钢表面上获得的薄膜的HZ光谱表明,PANISSA与过氧二硫酸盐对低碳钢氧化产物的相互作用。 SEM图像显示了在裸露的和化学预处理的低碳钢表面上合成的PANISSA膜之间的形态差异。 EIS证明了粘附的PANISSA膜在化学预处理的低碳钢上具有有效的防腐性能。

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