Syntheses and Thermo-Decomposition Process of the Co-Doping VO2(M) Precursor

Article Preview

Abstract:

The precursor doped with W6+ and Mo6+ ionic was prepared using oxalic acid as reduction acid, V2O5 as vanadium source, (NH4)6W7O24·6H2O and (NH4)6Mo7O24·4H2O as doped sources. The morphology, composition, structure and the thermo-decomposing process of the precursor were characterized by means of SEM, EDS, FTIR and DSC/TG/DTG. The thermal decomposition was confirmed by XRD.

You might also be interested in these eBooks

Info:

Periodical:

Materials Science Forum (Volumes 663-665)

Pages:

1289-1292

Citation:

Online since:

November 2010

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2011 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] F. J. Morin: Phys. Rev. Lett. Vol. 3 (1959), p.34.

Google Scholar

[2] W. Burkhardt, T. Christmann and S. Franke: Thin Solid Films Vol. 402 (2002), p.226.

Google Scholar

[3] T. D. Manning and I. P. Parkin: Polyhedron Vol. 23 (2004), p.3087.

Google Scholar

[4] D. C. Yin, N. K. Xu and J. Y. Zhang: Mater. Res. Bull. Vol. 31 (1996), p.335.

Google Scholar

[5] F. Beteille, L. Mazerolles and J. Livage: Mater. Res. Bull. Vol. 34 (1999), p.2177.

Google Scholar

[6] J. Livage: Coordination Cherra. Rev. Vol. 391 (1999), p.190.

Google Scholar

[7] M. A. Richardson and J. A. Coath: Opt. Laser Technol. Vol. 30 (1998), p.137.

Google Scholar

[8] R. T. Kivaisi and M. Samiji: Solar Energy Mater. Solar Cells Vol. 57 (1999), p.141.

Google Scholar

[9] D. C. Yin, N. K. Xu and J. Y. Zhang: J. Phys. D: Appl. Phys. Vol. 29 (1996), p.1051.

Google Scholar

[10] T. J. Hanlon, R. E. Walker and J. A. Coat: Thin Solid Films Vol. 405 (2002), p.234.

Google Scholar

[11] P. Jin, S. Nakao and S. Tanemura: Thin Solid Films Vol. 324 (1998), p.151.

Google Scholar

[12] J. Livage: Coordination Chem. Rev. Vol. 391 (1999), p.190.

Google Scholar

[13] E. Cavanna, J. P. Segaud and J. Livage: Mater. Res. Bull. Vol. 34 (1999), p.167.

Google Scholar

[14] W. Burkhardt, T. Christmann and B. K. Meyer: Thin Solid Films Vol. 345 (1999), p.229.

Google Scholar

[15] S. W. Lu, L. S. Hou and F. X. Gan: Thin Solid Films Vol. 353 (1999), p.40.

Google Scholar

[16] Z. P. Wu, A. Miyashita and S. Yamammoto: J. Appl. Phys. Vol. 86 (1999), p.5311.

Google Scholar

[17] M. H. Lee: Solar Energy Mater: Solar Cells Vol. 71 (2002), p.537.

Google Scholar

[18] Y. Cheng, F. Cao and Y. P. Ma: Nano-processing Technique Vol. 5 (2008), p.40. (In Chinese).

Google Scholar

[19] E. Baudrin, G. Sudant, D. Larcher and B. Dunn: Chem. Mater. Vol. 18 (2006), p.4369.

Google Scholar

[20] S. Pavasupreea, Y. Suzukia and A. Kitiyanana: J. Solid State Chem. Vol. 178 (2005), p.2152.

Google Scholar

[21] H. Z. Liu, H. Y. Chen and R. J. Wu: The Chinese Journal of Nonferrous Metals Vol. 11 (2001), p.190. (In Chinese).

Google Scholar