@article{Effects of various applied voltages on physical properties of TiO2 nanotubes by anodization method_2023, volume={11}, url={https://oiccpress.com/journal-of-theoretical-and-applied-physics/article/effects-of-various-applied-voltages-on-physical-properties-of-tio2-nanotubes-by-anodization-method-2/}, DOI={10.1007/s40094-017-0257-9}, abstractNote={AbstractThree steps anodization process is used to synthesize highly ordered and uniform multilayered titanium oxide (TiO2) nanotubes and effect of different anodization voltages are studied on their physical properties such as structural, morphological and optical. The crystalized structure of the synthesized tubes is investigated by X-ray diffractometer analysis. To study the morphology of the tubes, field emission scanning electron microscopy is used, which showed that the wall thicknesses and the diameters of the tubes are affected by the different anodization voltages. Moreover, optical studies performed by diffuse reflection spectra suggested that band gap of the TiO2 nanotubes are also changed by applying different anodization voltages. In this study using physical investigations, an optimum anodization voltage is obtained to synthesize the uniform crystalized TiO2 nanotubes with suitable diameter, wall thickness and optical properties.}, number={3}, journal={Journal of Theoretical and Applied Physics}, publisher={OICC Press}, year={2023}, month={Nov.}, keywords={Anodization, SEM, XRD, TiO} }