Preparation of Conducting PEDOT/PI Films by Depositing Polymerization of EDOT in Liquid Phase

Article Preview

Abstract:

PI film was suspended in NaOH, FeCl3 and EDOT solutions sequentially. The surfaces of the films were analyzed with ATR-FTIR and the surface resistances were measured in four-probe mode. After immersed in NaOH solution amic acids were introduced to the film surface. The hydrolyzed film exhibited better adsorbing property and was able to adsorb FeCl3 in g/m2 magnitude. As the film with adsorbed FeCl3 was suspended in EDOT solution EDOT deposited on the surface and converted to conducting PEDOT. The resultant film exhibited surface resistance about 105 Ω and the characteristic absorption bonds of PEDOT on FTIR spectrum.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

8-12

Citation:

Online since:

July 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] D.R. Evans, M.V. Fabretto, M. Mueller: J Mater. Chem., Vol. 22 (2012), p.14889.

Google Scholar

[2] I. Winter, C. Reece, J. Hormes: Chem. Phys., Vol. 194 (1995), p.207.

Google Scholar

[3] M.V. Fabretto, D.R. Evans, M. Mueller: Chem. Mater., Vol. 24 (2012), p.3998.

Google Scholar

[4] R.R. Yue, J.K. Synth Met, Vol. 162 (2012), p.912.

Google Scholar

[5] C.M. Madla P.N. Kariukia,J. Gendrona: Synth. Met., Vol. 161 (2011), p.1159.

Google Scholar

[6] A.P. Joaquin, A.G. G Pablo, D.L.P. Alejandro: J. Mater. Chem., Vol. 22 (2012), p.4944.

Google Scholar

[7] S.L. MeFarlane, B. A Deore, N. Svenda: Macromolecules, Vol. 43 (2010), p.10241.

Google Scholar

[8] J. Kim, E. Kim, Y. Won: Synth. Met., Vol 139 (2003), p.485.

Google Scholar

[9] W.J. Bjorn, W. Keld: Macromolecules, Vol. 37 (2004), p.4538.

Google Scholar

[10] K. West,T. Jacobsen: Synth. Met., Vol 55-57 (1993), p.1412.

Google Scholar

[11] M.V. Fabretto, K. Zuber, P. Murphy: J. Mater. Chem., Vol. 19 (2009), p.7871.

Google Scholar

[12] L. Groenendaal,F. Jonas,D. Freitag: Adv. Mater., Vol. 12 (2000), p.481.

Google Scholar

[13] L.E. Stephans, A. Myles, R.R. Thomas: Langmuir, Vol. 16 (2000), p.4706.

Google Scholar

[14] R.M. Silverstein, F.X. Webster, D.J. Kiemle: Spectrometric Identification of Organic Compounds, John Wiley & Sons, Inc. 90 (2005).

Google Scholar

[15] X.D. Zhang, Q.T. Liu, W. Jia: J. Liaoning Univ. Vol. 231(996), p.41.

Google Scholar

[16] H. Neugebauer: J. Electroanal. Chem., Vol. 563 (20040, p.153.

Google Scholar

[17] C. Kvarnstro,H. Neugebauera: J. Mol. Struc., Vol. 521 (2000), p.271.

Google Scholar

[18] A. Dkhissi,F. Louwet,L. Groenendaal: Chem. Phys. Lett., Vol 359 (2002), p.359.

Google Scholar