Iwai Mana, Kikuchi Tatsuya, Suzuki Ryosuke O
Division of Materials Science and Engineering, Faculty of Engineering, Hokkaido University, N13-W8, Kita-ku, Sapporo, Hokkaido, 060-8628, Japan.
Sci Rep. 2021 Mar 31;11(1):7240. doi: 10.1038/s41598-021-86696-z.
High-aspect ratio ordered nanomaterial arrays exhibit several unique physicochemical and optical properties. Porous anodic aluminum oxide (AAO) is one of the most typical ordered porous structures and can be easily fabricated by applying an electrochemical anodizing process to Al. However, the dimensional and structural controllability of conventional porous AAOs is limited to a narrow range because there are only a few electrolytes that work in this process. Here, we provide a novel anodizing method using an alkaline electrolyte, sodium tetraborate (NaBO), for the fabrication of a high-aspect ratio, self-ordered nanospike porous AAO structure. This self-ordered porous AAO structure possesses a wide range of the interpore distance under a new anodizing regime, and highly ordered porous AAO structures can be fabricated using pre-nanotexturing of Al. The vertical pore walls of porous AAOs have unique nanospikes measuring several tens of nanometers in periodicity, and we demonstrate that AAO can be used as a template for the fabrication of nanomaterials with a large surface area. We also reveal that stable anodizing without the occurrence of oxide burning and the subsequent formation of uniform self-ordered AAO structures can be achieved on complicated three-dimensional substrates.
高纵横比有序纳米材料阵列展现出几种独特的物理化学和光学性质。多孔阳极氧化铝(AAO)是最典型的有序多孔结构之一,通过对铝施加电化学阳极氧化工艺可轻松制备。然而,传统多孔AAO的尺寸和结构可控性局限于较窄范围,因为在此工艺中起作用的电解质仅有几种。在此,我们提供一种使用碱性电解质硼酸钠(NaBO)的新型阳极氧化方法,用于制备高纵横比、自有序纳米尖峰多孔AAO结构。这种自有序多孔AAO结构在新的阳极氧化机制下具有宽范围的孔间距,并且通过对铝进行预纳米纹理化可制备高度有序的多孔AAO结构。多孔AAO的垂直孔壁具有周期性为几十纳米的独特纳米尖峰,并且我们证明AAO可用作制备具有大表面积纳米材料的模板。我们还揭示,在复杂的三维基板上可实现无氧化膜烧蚀发生的稳定阳极氧化以及随后均匀自有序AAO结构的形成。