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Photocatalysis of nano-perovskites

Published online by Cambridge University Press:  31 January 2011

Yen-Hua Chen
Affiliation:
yhc513@mail.ncku.edu.tw, National Cheng-Kung University, Department of Earth Sciences, Taiwan, Taiwan, Province of China
Yu-De Chen
Affiliation:
Yu-De@fakemail.com, National Cheng-Kung University, Department of Earth Sciences, Taiwan, Taiwan, Province of China
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Abstract

In this study, we can successfully synthesize nano-perovskites, including nano-CaTiO3, nano-SrTiO3, and nano-BaTiO3, by a co-precipitation method. The band gap of the nano-perovskites are 3.65 eV, 3.44 eV, and 3.35 eV, for nano-CaTiO3, nano-SrTiO3, and nano- BaTiO3, respectively. The ability of photocatalysis for nano-BaTiO3 is a little bit better than other nano-perovskites. It is also observed the photocatalytic activity increases with the increasing amount of photocatalysts. Moreover, the ability of photocatalysis using a higher energy UV-light is not promoted with the low energy UV-light.

Type
Research Article
Copyright
Copyright © Materials Research Society 2009

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References

1 Liu, J.W., Chen, G., Li, Z.H., and Zhang, Z.G., International Journal of Hydrogen Energy, 32, 2269 (2007)Google Scholar
2 Lei, X.F., and Xue, X.X., Materials Chemistry and Physics, 112, 928 (2007)Google Scholar
3 Liu, Y., Xie, L., Li, Y.., Yang, R., Qu, J., Li, Y., and Li, X., Journal of Power Sources, 183, 701 (2008)Google Scholar
4 Mizoguchi, H., Ueda, K., Orita, M., Moon, S.C., Kajihara, K., Hirano, M., and Hosono, H., Materials Research Bulletin, 37, 2401 (2008)Google Scholar
5 Qi, J.Q., Wang, Y., Chen, W. P., Li, L.T., and Chan, H.L.W., Journal of Solid State Chemistry, 178, 279 (2008)Google Scholar
6 Lee, S., Son, T., Yun, J., Kwon, H., Messing, G.L., and Jun, B., Materials Letters, 58, 2932 (2004)Google Scholar
7 Chen, J.F., Shen, Z.G., Liu, F.T., Liu, X.L., and Yun, J., Scripta Materialia, 49, 509 (2003)Google Scholar
8 Holliday, S., and Stanishevsky, A., Surface & Coatings Technology, 188, 741 (2004)Google Scholar
9 Miao, J., Hu, C., Liu, H., and Xiong, Y., Materials Letters, 62, 235 (2007)Google Scholar