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A novel experimental method for obtaining multi-layered TiO_2 nanotubes through electrochemical anodizing

机译:电化学阳极氧化制备多层TiO_2纳米管的新实验方法

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摘要

In this study, a new parameter having influence on the TiO_2 nanotubes formation process is reported. Except of previously mentioned and well-known anodizing parameters such as voltage, time of anodizing, type of electrolyte, temperature, etc., samples' configuration in the electrochemical cell represents an important factor in the anodizing procedure. The electrochemical anodization is a group of interconnected processes and factors, each one of them having its specific weight on the final result. It was observed that the very short distance in between two titanium plates connected to the anodic terminal of the electrochemical cell is the decisive factor for creating superimposed TiO_2 nanotube layers. More precisely, it was found that the configuration of two parallel Ti plates being in close contact to each other, mounted to the anodic terminal and in parallel with the graphite cathode, favors the formation through electrolysis of multi-layered TiO_2 nanotubes. The microscopic observation of multi-layered TiO_2 nanotubes was performed through the removal of the upper layer of nanotubes using sonication. This peculiar result was interpreted using existed theories such as First Fick's law and Nerst diffusion layer in combination with recently published research findings related to the effect of inter-electrode distance.
机译:在这项研究中,报告了一个新的参数,对TiO_2纳米管的形成过程有影响。除了先前提到的和众所周知的阳极氧化参数(例如电压,阳极氧化时间,电解质的类型,温度等)以外,电化学池中样品的配置是阳极氧化过程中的重要因素。电化学阳极氧化是一组相互关联的过程和因素,每个过程和因素对最终结果都有其特定的权重。已观察到,连接到电化学电池阳极端子的两个钛板之间的极短距离是产生叠加的TiO_2纳米管层的决定性因素。更精确地,发现两个彼此紧密接触,安装到阳极端子并与石墨阴极平行的平行的Ti板的构造有利于通过多层TiO 2纳米管的电解形成。通过超声去除纳米管的上层,进行了多层TiO_2纳米管的显微观察。结合First Fick定律和Nerst扩散层等现有理论,结合最近发表的有关电极间距离影响的研究成果,对这一特殊结果进行了解释。

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