铁基合金阳极氧化:基本原理、最新进展和应用。

Ruben Del Olmo, Olena Tynkevych, Magdalena Łazińska, Karolina Syrek, Tomasz Durejko, Mateusz Czerwiński, Leszek Zaraska, Ratnesh Tiwari, Marta Michalska-Domańska
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引用次数: 0

摘要

本综述旨在全面系统地分析阳极氧化过程,该过程可用于在最具技术相关性的铁基合金和钢表面合成纳米结构氧化膜。其中特别强调了对铁基纳米结构材料阳极氧化形成机理的详细分析。详细讨论了阳极氧化参数(包括铁合金类型、电解质成分、电位/电流制度以及各种后处理程序(包括退火处理))对氧化膜的生长、形态、成分和性能的影响。此外,还举例说明了在铁合金上生长的阳极薄膜在光催化、能量存储、传感器、生物医学等各个领域的可能应用。最后,还讨论了铁合金阳极氧化的当前趋势、挑战和前景。
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Anodizing of iron-based alloys: fundamentals, recent progress, and applications.

This review aims to comprehensively and systematically analyze the anodic oxidation process to form nanostructured oxide films on the surface of the most technologically relevant Fe-based alloys and steels. A special emphasis is put on detailed analysis of the mechanisms of the anodic formation of Fe-based nanostructured materials. The effect of anodizing parameters including the type of Fe-alloy, electrolyte composition, potential/current regimes, as well as various post-treatment procedures (including annealing treatment) on the growth, morphology, composition, and properties of the resulting oxide films is discussed in detail. Examples of possible applications of the anodic films grown on Fe-alloys in various fields including photocatalysis, energy storage, sensors, biomedicine, and others are also provided. Finally, current trends, challenges, and perspectives in the anodizing of Fe-alloys are addressed.

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