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Surface modification of stainless steel-304 electrode. 1. Voltammetric, rotating ring-disc electrode and XPS studies

机译:304不锈钢电极的表面改性。 1.伏安旋转圆盘电极和XPS研究

摘要

Hydrous oxide film was grown on stainless steel-304 under conditions of cycling voltammetry in 1 mol dm(-3) NaOH solution. The anodic voltammetric peak of Fe(OH)(2) oxidation was used as a measure of the oxide growth as a function of potential limits, sweep rates and the number of potential cycles. The oxide film stability was monitored by the use of rotating ring-disc electrode. During potential cycling in alkaline solution, it was found that after 30 cycles, 1.4% of the anodic charge was due to iron dissolution from the oxide film. The selective dissolution of iron and nickel from the oxide film, previously grown in alkaline solution, was monitored at the potential of open circuit in an acid solution of pH 2.7. A model for enhanced stability of hydrous oxide film in acid solution is proposed. The model, based on voltammetric, rotating ring-disc electrode and X-ray photoelectron spectroscopy measurements, implies that after hydrous oxide growth by potential cycling in an alkaline solution, the oxide placed in an acid solution remains enriched in chromium due to selective dissolution of nickel and iron. The Cr-O-Cr chains stabilize the modified layer and contribute to the enhanced stability against corrosion. This model unifies several previously proposed models: the model for a hydrous oxide growth by potential cycling, the polymeric hydrated oxide model for the passivity of iron and stainless steels and the percolation model for the passivity of stainless steels.
机译:在1 mol dm(-3)NaOH溶液中,在循环伏安法的条件下,在不锈钢304上生长含水氧化膜。 Fe(OH)(2)氧化的阳极伏安峰用作氧化物生长的量度,该量是电位极限,扫描速率和电位循环数的函数。通过使用旋转圆盘电极来监测氧化膜的稳定性。在碱性溶液中进行潜在的循环过程中,发现在30次循环后,有1.4%的阳极电荷是由于铁从氧化膜中溶解所致。在pH 2.7的酸性溶液中,在开路电势下,监测先前在碱性溶液中生长的氧化膜中铁和镍的选择性溶解。提出了提高酸性溶液中水合氧化膜稳定性的模型。该模型基于伏安法,旋转圆盘电极和X射线光电子能谱测量,表明在碱性溶液中通过潜在循环产生的水合氧化物生长后,置于酸溶液中的氧化物仍会由于铬的选择性溶解而富含铬。镍和铁。 Cr-O-Cr链可稳定改性层并有助于增强抗腐蚀稳定性。该模型统一了先前提出的几种模型:通过潜在循环进行水合氧化物生长的模型,用于铁和不锈钢钝化的聚合水合氧化物模型以及用于不锈钢钝化的渗滤模型。

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