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http://dx.doi.org/10.3740/MRSK.2015.25.10.543

Effect of the O2/N2 Ratio on the Growth of TiO2 Nanowires via Thermal Oxidation  

Lee, Geun-Hyoung (Department of Advanced Materials Engineering, Dong-eui University)
Publication Information
Korean Journal of Materials Research / v.25, no.10, 2015 , pp. 543-546 More about this Journal
Abstract
$TiO_2$ nanowires were grown by thermal oxidation of TiO powder in an oxygen and nitrogen gas environment at $1000^{\circ}C$. The ratio of $O_2$ to $N_2$ in an ambient gas was changed to investigate the effect of the gas ratio on the growth of $TiO_2$nanowires. The oxidation process was carried out at different $O_2$/$N_2$ ratios of 0/100, 25/75, 50/50 and 100/0. No nanowires were formed at $O_2$/$N_2$ ratios of less than 25/75. When the $O_2$/$N_2$ ratio was 50/50, nanowires started to form. As the gas ratio increased to 100/0, the diameter and length of the nanowires increased. The X-ray diffraction pattern showed that the nanowires were $TiO_2$ with a rutile crystallographic structure. In the XRD pattern, no peaks from the anatase and brookite structures of $TiO_2$were observed. The diameter of the nanowires decreased along the growth direction, and no catalytic particles were detected at the tips of the nanowires which suggests that the nanowires were grown with a vapor-solid growth mechanism.
Keywords
titanium dioxide; nanowires; rutile structure; thermal oxidation; oxygen/nitrogen ratio;
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1 S. J. Kwon, H. B. Im, J. E. Nam, J. K. Kang, T. S. Hwang and K. B. Yi, Appl. Surf. Sci., 320, 487 (2014).   DOI   ScienceOn
2 J. Y. Ahn, H. K. Cheon, W. D. Kim, Y. J. Kang, J. M. Kim, D. W. Lee, C. Y. Cho, Y. H. Hwang, H. S. Park, J. W. Kang and S. H. Kim, Chem. Eng. J., 188, 216 (2012).   DOI   ScienceOn
3 F. He, D. Zhou, X. Feng, C. Zhang, T. Lia and G. Li, Mater. Lett., 132, 1 (2014).   DOI   ScienceOn
4 L. Yu, Y. Lv, X. Zhang, Y. Zhang, R. Zou and F. Zhang, J. Cryst. Growth, 334, 57 (2011).   DOI   ScienceOn
5 R. R. Kumar, K. N. Rao and A. R. Phani, Mater. Lett., 66, 110 (2012).   DOI   ScienceOn
6 J. M. Wu, H. C. Shin and W. T. Wu, Nanotechnology, 17, 105 (2006).   DOI   ScienceOn