Hydrothermal Synthesis and Characterization of PbTiO3 Microrods

Article Preview

Abstract:

PbTiO3 microrods were successfully synthesized via a surfactants-free hydrothermal method. The powders were characterized by X-ray powder diffraction (XRD), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), and photoluminescent spectra techniques (PL). It was found that the precursor played a key role in the formation of PbTiO3 microrods.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 148-149)

Pages:

903-906

Citation:

Online since:

October 2010

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2011 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] S. Iijima: Nature Vol. 354 (1991), p.56.

Google Scholar

[2] J.T. Hu, T.W. Odom, and C.M. Lieber: Acc. Chem. Res Vol. 32 (1999), p.435.

Google Scholar

[3] X. L. Hu and Y. J. Zhu: Langmuir Vol, 20.

Google Scholar

[4] (2004), p.1521.

Google Scholar

[4] Z. R. Tian, J. A. Voigt, J. Liu, B. Mckenzie, and M. J. Mcdermott: J. Am. Chem. Soc Vol, 124.

Google Scholar

[44] (2002), p.12954.

Google Scholar

[5] D. Rautaray, K. Sinha, S. S. Shankar, S. D. Adyanthaya, and M. Sastry: Chem. Mater Vol, 16.

Google Scholar

[7] (2004), p.13561361.

Google Scholar

[6] B.A. Hernandez, K.S. Chang, E.R. Fisher, and P.K. Dorhout: Chem. Mater Vol, 14 (2002), p.480.

Google Scholar

[7] Z.Y. Cai, X.R. Xing, R.B. Yu, X.Y. Sun, and G.R. Liu: Inorg. Chem Vol, 46 (2007), p.7423.

Google Scholar

[8] M.C. Hsu, I.C. Leu, Y.M. Sun, and M.H. Hon: J. Solid State Chem Vol, 179 (2006), p.1421.

Google Scholar

[9] Y. Deng, J.L. Wang, K.R. Zhu, M.S. Zhang, J.M. Hong, Q.R. Gu, and Z. Yin: Mater. Lett Vol, 59 (2005), p.3272.

Google Scholar

[10] L.F. Liu, T.Y. Ning, Y. Rena, Z.H. Sun, F.F. Wang W.Y. Zhou, S.H. Xie, L. Song, and S.D. Luo: Mater. Sci. Eng. B Vol, 149 (2008), p.41.

Google Scholar

[11] Y.M. Hu, H.S. Gu, and X.C. Sun: Appl. Phys. Lett Vol, 88 (2006), p.193120.

Google Scholar

[12] T. Yoshida, M. Tochimoto, D. Schlettwein, D. Wohrle, T. Sugiura, and H. Minoura: Chem Mater Vol, 11 (1999), p.2657.

Google Scholar