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The role of hydrogen peroxide in the deposition of cerium-based conversion coatings

机译:过氧化氢在铈基转化膜沉积中的作用

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Cerium-based conversion coatings are progressing as an effective alternative to hazardous chromate-based systems used in the treatment of metal surfaces. However, there is still considerable debate over the mechanism by which these coatings are formed. Here, titrations of cerium-based conversion coating solutions were carried out in order to model the reactions that occur at the metal-solution interface during coating, with a particular emphasis on investigating the role of hydrogen peroxide (H_2O_2). The titration curves obtained support the proposed formation of Ce(Ⅲ) peroxo complexes such as Ce(H_2O_2)~(3+) as an initial step, followed by deprotonation, oxidation and precipitation to form peroxo-containing Ce(Ⅳ) species such as Ce~((Ⅳ))(O_2)(OH)_2. The precipitates resulting from titrations were characterised by Raman spectroscopy, X-ray diffraction and thermogravimetric analysis, confirming the presence of peroxo bonds, and nano-sized CeO_2 crystallites that decreased in size with increasing H_2O_2 concentration. Characterisation of cerium conversion coatings on aluminium alloy surfaces confirmed the presence of peroxo species in the coatings, thereby supporting the titration model.
机译:铈基转化膜正在发展成为金属表面处理中使用的有害铬酸盐基体系的有效替代品。然而,关于形成这些涂层的机理仍存在很多争论。在此,进行了铈基转化涂层溶液的滴定,以模拟在涂层过程中在金属溶液界面发生的反应,特别着重于研究过氧化氢(H_2O_2)的作用。所获得的滴定曲线支持拟议的形成Ce(Ⅲ)过氧配合物如Ce(H_2O_2)〜(3+)的初始步骤,然后进行去质子化,氧化和沉淀形成含过氧的Ce(Ⅳ)物种,例如铈〜((Ⅳ))(O_2)(OH)_2。滴定产生的沉淀物通过拉曼光谱,X射线衍射和热重分析进行表征,确认存在过氧键和纳米级CeO_2微晶,随着H_2O_2浓度的增加其尺寸减小。铝合金表面铈转化膜的表征证实了涂层中存在过氧化物,从而支持了滴定模型。

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