Brudzisz Anna M, Giziński Damian, Stępniowski Wojciech J
Institute of Materials Science and Engineering, Faculty of Advanced Technology and Chemistry, Military University of Technology, 2 Kaliskiego Str, 00908 Warsaw, Poland.
Molecules. 2021 Oct 22;26(21):6378. doi: 10.3390/molecules26216378.
Anodic oxidation of metals leads to the formation of ordered nanoporous or nanotubular oxide layers that contribute to numerous existing and emerging applications. However, there are still numerous fundamental aspects of anodizing that have to be well understood and require deeper understanding. Anodization of metals is accompanied by the inevitable phenomenon of anion incorporation, which is discussed in detail in this review. Additionally, the influence of anion incorporation into anodic alumina and its impact on various properties is elaborated. The literature reports on the impact of the incorporated electrolyte anions on photoluminescence, galvanoluminescence and refractive index of anodic alumina are analyzed. Additionally, the influence of the type and amount of the incorporated anions on the chemical properties of anodic alumina, based on the literature data, was also shown to be important. The role of fluoride anions in d-electronic metal anodizing is shown to be important in the formation of nanostructured morphology. Additionally, the impact of incorporated anionic species, such as ruthenites, and their influence on anodic oxides formation, such as titania, reveals how the phenomenon of anion incorporation can be beneficial.
金属的阳极氧化会导致形成有序的纳米多孔或纳米管状氧化层,这些氧化层在众多现有及新兴应用中发挥着作用。然而,阳极氧化仍有许多基本方面需要深入理解。金属的阳极氧化伴随着不可避免的阴离子掺入现象,本综述将对此进行详细讨论。此外,还阐述了阴离子掺入阳极氧化铝的影响及其对各种性能的作用。分析了文献中关于掺入的电解质阴离子对阳极氧化铝的光致发光、电致发光和折射率的影响。此外,根据文献数据,掺入阴离子的类型和数量对阳极氧化铝化学性质的影响也很重要。氟阴离子在d电子金属阳极氧化中对纳米结构形态的形成起着重要作用。此外,掺入的阴离子物种(如钌酸盐)及其对阳极氧化物(如二氧化钛)形成的影响,揭示了阴离子掺入现象如何能带来益处。