Luca Dumitru, Dobromir Marius, Stoian George, Ciobanu Adrian, Luca Mihaela
Faculty of Physics, Alexandru Ioan Cuza University of Iasi, 700506 Iasi, Romania.
Department of Exact and Natural Sciences, Institute of Interdisciplinary Research, Alexandru Ioan Cuza University of Iasi, 700506 Iasi, Romania.
Nanomaterials (Basel). 2023 Nov 22;13(23):3000. doi: 10.3390/nano13233000.
Electrochemical anodization is already a well-established process, owing to its multiple benefits for creating high-grade titanium dioxide nanotubes with suitable characteristics and tunable shapes. Nevertheless, more research is necessary to fully comprehend the basic phenomena at the anode-electrolyte interface during anodization. In a recent paper, we proposed the use of sawtooth-shaped voltage pulses for Ti anodization, which controls the pivoting point of the balance between the two processes that compete to create nanotubes during a self-organization process: oxide etching and oxidation. Under these conditions, pulsed anodization clearly reveals the history of nanotube growth as recorded in the nanotube morphology. We show that by selecting the suitable electrolyte and electrical discharge settings, a nanoporous structure may be generated as a repeating pattern along the nanotube wall axis. We report the findings in terms of nanotube morphology, crystallinity, surface chemistry, photocatalytic activity, and surface hydrophilicity as they relate to the electrical parameters of electrochemical anodization. Aside from their fundamental relevance, our findings could lead to the development of a novel form of TiO nanotube array layer.
电化学阳极氧化已是一个成熟的工艺,因为它在制备具有合适特性和可调节形状的高品质二氧化钛纳米管方面具有诸多优势。然而,仍需要更多研究来全面理解阳极氧化过程中阳极 - 电解质界面的基本现象。在最近的一篇论文中,我们提出使用锯齿形电压脉冲对钛进行阳极氧化,该脉冲可控制在自组织过程中竞争形成纳米管的两个过程(氧化物蚀刻和氧化)之间平衡的转折点。在这些条件下,脉冲阳极氧化清晰地揭示了纳米管形态中记录的纳米管生长历程。我们表明,通过选择合适的电解质和放电设置,可以沿纳米管壁轴生成纳米多孔结构作为重复图案。我们报告了与电化学阳极氧化的电学参数相关的纳米管形态、结晶度、表面化学、光催化活性和表面亲水性等方面的研究结果。除了其基本相关性外,我们的研究结果可能会促成一种新型TiO纳米管阵列层的开发。