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The importance of using hydrogen evolution inhibitor during the Zn and Zn-Mn electrodeposition from ethaline

机译:乙胺锌和锌锰电沉积过程中使用析氢抑制剂的重要性

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Cyclic voltammetry was used for the characterization of zinc electrodeposition on steel from ethaline deep eutectic solution (1:2 choline chloride: ethylene glycol). The influence of 4-hydroxy-benzaldehyde (HBA) as an additive was analyzed. It was shown that hydrogen evolution is inhibited in the presence of HBA and further significantly retarded upon addition of Zn2+ to the solution containing HBA. The cathodic peak for Zn2+ reduction in this type of ionic liquid (ethaline+HBA+Zn2+) resembles the zinc reduction in aqueous solution. The corrosion resistance of Zn coatings deposited at different current densities was evaluated by electrochemical methods, i.e., polarization measurements and electrochemical impedance spectroscopy in 3 % NaCl solution. The possibility of Zn–Mn alloy deposition from ethaline deep eutectic solvent was investigated for the first time. In addition, the corrosion stability of these alloy coatings was analyzed and compared to the stability of bare Zn coatings. It was shown that the optimum deposition current density for both Zn and Zn–Mn coatings with increased corrosion stability from ethaline + HBA electrolyte is 5 mA cm?2.
机译:循环伏安法用于表征乙胺深共晶溶液(1:2氯化胆碱:乙二醇)中锌在钢上的电沉积。分析了4-羟基苯甲醛(HBA)作为添加剂的影响。结果表明,在HBA的存在下,氢的释放受到抑制,并且在向含有HBA的溶液中添加Zn2 +时,氢的释放进一步明显受到阻碍。在这种类型的离子液体(乙醇+ HBA + Zn2 +)中,Zn2 +还原的阴极峰类似于水溶液中的锌还原。通过电化学方法,即在3%NaCl溶液中的极化测量和电化学阻抗谱,评价了在不同电流密度下沉积的Zn涂层的耐腐蚀性。首次研究了从乙醇深共熔溶剂中沉积锌锰合金的可能性。另外,分析了这些合金涂层的腐蚀稳定性并将其与裸露的锌涂层的稳定性进行了比较。结果表明,对于乙苯胺和HBA电解液,随着腐蚀稳定性的提高,Zn和Zn-Mn涂层的最佳沉积电流密度均为5 mA cm?2。

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