酸碱相互作用在铝点蚀中的作用综述

IF 2.7 4区 材料科学 Q3 ELECTROCHEMISTRY
M. Petrunin, L. Maksaeva, T. Yurasova
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引用次数: 1

摘要

摘要本文描述了铝点蚀成核的电极动力学模型,该模型考虑了金属表面的电荷、氯离子在氧化物表面的吸附、氯离子借助氧空位穿透氧化膜以及金属/氧化物界面处引发点蚀的基体溶解等因素。结果表明,临界点蚀电位是氧化铝覆盖铝表面薄层电位的函数,二元表面合金化的点蚀电位值与二元合金中合金元素氧化物的等电点有关。建立了一种点蚀起爆的电极动力学模型,用以解释表面合金化对二元合金点蚀起爆的影响。提出了一种通过形成带有负电荷和正电荷基团的外来表面有机硅纳米层来改变表面电荷的方法。确定了四个特征(q, Ψ1-potential, Epit和铝的脱钝化倾向)取决于离子交换基团的性质,它们的酸解离程度以及与活化离子的离子化学相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of acid–base interactions in the pitting corrosion of aluminum: a review
Abstract The review describes an electrode kinetic model of aluminum pitting nucleation taking into account the charge of the metal surface, the adsorption of chloride ions on the oxide surface, their penetration through the oxide film with the help of oxygen vacancies, and the dissolution of the underlying substrate with the initiation of pitting corrosion at the metal/oxide interface. It is shown that the critical pitting potential is a function of the potential of a thin layer of aluminum surface covered by oxide and the value of the pitting potential of a binary surface alloying is related to the isoelectric point of the alloying element oxide in the binary alloy. An electrode kinetic model of pitting initiation is described, which was used to explain the effect of surface alloying on the pitting initiation on binary alloys. A method for changing the surface charge by forming foreign surface organosilicon nanolayers bearing both negatively and positively charged groups was proposed. It has been established that four characteristics (q, Ψ1-potential, Epit and the tendency of aluminum to depassivate) depend on the nature of ion-exchange groups, the degree of their acid dissociation, and the ion-chemical interaction with activator ions.
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来源期刊
Corrosion Reviews
Corrosion Reviews 工程技术-材料科学:膜
CiteScore
5.20
自引率
3.10%
发文量
44
审稿时长
4.5 months
期刊介绍: Corrosion Reviews is an international bimonthly journal devoted to critical reviews and, to a lesser extent, outstanding original articles that are key to advancing the understanding and application of corrosion science and engineering in the service of society. Papers may be of a theoretical, experimental or practical nature, provided that they make a significant contribution to knowledge in the field.
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