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A simple and convenient method to fabricate new types of phytic acid–metal conversion coatings with excellent anti-corrosion performance on the iron substrate

机译:一种简便的方法,用于在铁底材上制备具有优异防腐蚀性能的新型植酸-金属转化膜

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摘要

A simple and practical method was developed to prepare a series of phytic acid (PA)–metal complex coatings on iron substrate by directly immersing the iron samples in the mixed solutions containing PA and metal ions. The key technologies of fabricating PA–metal complex coatings include: (i) anchoring of PA molecules onto the iron surface via complexation with Fe2+ ions dissolved from the iron substrate, and (ii) layer-by-layer deposition of PA–metal complexes on the PA/Fe2+ bottom layer through the bridging effect of additive metal ions. The present method was applicable to the film-forming process of a variety of metal ions, such as Zn2+, Ca2+, Co2+ and Ni2+, and the as-prepared PA–metal complex coatings were defined as PA–M conversion coatings (M = Zn2+, Ca2+, Co2+ and Ni2+ herein). Due to the strong coordination ability, PA molecules may be self-assembled on the iron surface, forming a layer of organic thin film (here defined as PA film), without the help of additive metal ions. However, the comparison between PA film and PA–M coatings shows that PA–M coatings were much thicker (over 15 μm) and denser and also possessed much stronger anti-corrosion performance compared to the PA film. The present study provides a new path for the fabrication of environmentally-friendly PA-based chemical conversion coatings and further broadens the application range of PA in metal surface pretreatment.
机译:通过将铁样品直接浸入含有PA和金属离子的混合溶液中,开发了一种简单实用的方法来在铁基质上制备一系列植酸(PA)-金属络合物涂层。制备PA-金属复合涂层的关键技术包括:(i)通过与Fe 2 + 的络合将PA分子锚定在铁表面上离子从铁基质中溶解出来;以及(ii)PA-Fe 2 + 底层通过PA-Fe络合层的逐层沉积附加金属离子。该方法适用于Zn 2 + ,Ca 2 + ,Co 2 + 和Ni 2 + 以及制备的PA金属复杂涂层定义为PA–M转化涂层(M = Zn 2 + ,Ca 2 + ,Co 2 + 和Ni 2 + )。由于强大的配位能力,PA分子可以在铁表面上自组装,从而形成一层有机薄膜(在此定义为PA膜),而无需添加金属离子的帮助。但是,PA膜与PA–M涂层之间的比较表明,与PA膜相比,PA–M涂层更厚(超过15μm)且更致密,并且还具有更强的防腐性能。本研究为环保型PA基化学转化膜的制备提供了一条新途径,并进一步拓宽了PA在金属表面预处理中的应用范围。

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