Conductivity Studies on Li1-XAlxTi2-X(PO4)3 (X=0.0-0.5) Due to the Addition of Al3+ Trivalent Cation

Article Preview

Abstract:

The Li-ion fast conductor, Li1-XAlxTi2-X(PO4)3 (LATP) compound were synthesized by a sol-gel method. Effects due to the addition of Al3+ into Li1-XAlxTi2-X(PO4)3 (x=0.0-0.5) glass-ceramics system have been investigated using electrochemical impedance spectroscopy (EIS), X-ray differential analysis (XRD) and permittivity studies. The crystalline phase of the samples obtained confirming that they had a characteristic of glass-ceramics structure.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 418-420)

Pages:

1869-1872

Citation:

Online since:

December 2011

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] X.X. Xu, Z.Y. Wen, Z. H. Gu, Z.X. Lin, Material Letters 58 (2004) 3248-3241.

Google Scholar

[2] A.R. Aatiq , M. Menetrier, L. Croguennec, E. Suard, C. Delmas, J. Mater. Chem. 12 (2002) 2971-29978.

Google Scholar

[3] X.X. Xu, Z.Y. Wen, J.G. Wu, X.L. Yang, Solid State Ionics 178 (2007) 29-34.

Google Scholar

[4] C. R. Mariappan, G. Govindaraj, B. Roling, Solid State Ionics 176 (2005) 723-729.

DOI: 10.1016/j.ssi.2004.11.008

Google Scholar

[5] L. Vijayan, G. Govindaraj, J. Phys. Chem. Solids (2011), doi:10.1016/j.jpcs.2011. 02.001

Google Scholar

[6] E. Kazakevicius, A. Urcinkas, A.Kezionis, A. Dindune, Z. Kanepe, J. Ronis, Electrochemica Acta 51 (2006) 6199-6202.

Google Scholar

[7] A. Aatiq, M. Menetrier, L. Croguennec, E. Suard, C. Delmas, J. Mater. Chem. 12 (2002) 2971-2978.

Google Scholar

[8] A. Nazulla, Solid State Ionics 181 (2010) 659-663.

Google Scholar

[9] A.F. Orliukas, A. Dindune, Z. Kanepe, J. Ronis, B. Bagdonas, A. Kežionis, Electrochemica A Acta 51 (2006) 6194-6198.

DOI: 10.1016/j.electacta.2005.11.049

Google Scholar

[10] A. F. Orliukas, A. Dindune, Z. Kanepe, J. Ronis, E. Kazakevicius, A. Kežionis, Solid State Ionics 157 (2003) 177-181.

DOI: 10.1016/j.ssi.2005.04.026

Google Scholar

[11] H. Hosono, Y. Abe, Journal of Non-Crystalline Solids 190 (1995) 185-197.

Google Scholar

[12] T. Minami, A. Hayashi, M. Tatsumisago, Solid State Ionics 177 (2006) 2715-2720.

Google Scholar

[13] J. Fu, Solid State Ionics 96 (1997) 191-194.

Google Scholar

[14] X.M. Wu, X.H. Li, Y.H. Zhang, M.F. Xu, Z.Q. He, Materials Letters 58 (2004) 1227-1230.

Google Scholar

[15] M.Z.A. Yahya, A.K. Arof, European Polymer Journal 39 (2003) 897-902.

Google Scholar

[16] S.R. Majid, N.H. Idris, M.F. Hassan, T. Winnie, A.S.A. Khiar, A.K. Arof, Ionics 11(2005), pp.451-455

Google Scholar

[17] S.N. Mohamed, N.A. Johari, A.M.M. Ali, M.K. Harun, M.Z.A. Yahya, J. Power Sources 183 (2008) 35-354.

Google Scholar

[18] A.S. Best, M. Forsyth, D.R. MacFarlane, Solid State Ionics 136-137 (2000) 339-344.

Google Scholar