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Infrared Reflection-Absorption Study of the Aniline Electropolymerization on Stainless Steel

Published online by Cambridge University Press:  25 February 2011

F. Gaillard
Affiliation:
Départenent de Chimie Appliqufée et Génie Chimique, CNRS-URA 417 Université Claude Bernard LYON, 69622 Villeurbanne Cedex, France.
G. Bouyssoux
Affiliation:
Départenent de Chimie Appliqufée et Génie Chimique, CNRS-URA 417 Université Claude Bernard LYON, 69622 Villeurbanne Cedex, France.
S.N. Kumar
Affiliation:
Laboratoire de Physique de la Matiére, Institut National des Sciences Appliquées de Lyon, 69621 Villeurbanne Cedex, France.
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Abstract

Polyaniline (PANI) films were grown on 304 L steel and studied by FTIR spectrometry. The spectra of the films formed carry evidence for quinonic/aromatic alternating structure involving head-to-tail coupling. The coupling is quite independent of the thickness of the polymeric layer. The quinonic/aromatic ratio can be varied when the film is subjected to further dedoping treatments (electrochemical reduction or KOH immersion).

Type
Research Article
Copyright
Copyright © Materials Research Society 1990

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References

REFERENCES

1. MacDiarmid, A.G., Chiang, J.C., Halpern, M., Huang, W.S.. Mu, S.L., Somasiri, N.L.D., Wu, U. and Yaniger, S.I., Mol.Cryst.Liq.Cryst. 121, 173 (1985).CrossRefGoogle Scholar
2. Genies, E.M., Syed, A.A. and Tsintavis, C., Mol. Cryst.Liq.Cryst. 121, 181 (1985).CrossRefGoogle Scholar
3. Bouyssoux, G., Gaillard, F., Roche, A., International Symposium on Trends and New Applications in Thin Films, (Socifetfe Francaise du Vide, Strasbourg, France, 1987) pp. 369373.Google Scholar
4. Neugebauer, H., Sariciftci, N.S., Kuzmany, H., Neckel, A., Mikrochim. Acta [Wien] 1, 265 (1988).CrossRefGoogle Scholar
5. Volkov, A., Tourillon, G., Lacaze, P.E., Dubois, J.E., Electroanal, J.. Chem. 115, 279 (1980).Google Scholar
6. Kumar, S.N., Gaillard, F., Bouyssoux, G., Synth. Metals, in press.Google Scholar
7. Gaillard, F., Thesis, Lyon, France, 1987.Google Scholar
8. Salanek, W.R., Lidberg, B., Inganäs, O., Orlandsson, R., Lundström, I., MacDiarmid, A.G., Halpern, M., Somarisi, N.L.D., Mol. Cryst.Liq. Cryst. 121, 191 (1985).CrossRefGoogle Scholar
9. Ohsaka, T., Ohnuki, Y., Oyama, N., Katagiri, G., Kamisako, K., J. Electroanal. Chem. 161, 399 (1984).CrossRefGoogle Scholar
10. Mazella, D., Gaillard, F., Bouyssoux, G., Roche, A., Romand, M., 2ème Congrès International sur I’Adhésion et les Adhésifs, (ADHEC0M, Bordeaux, France, 1989) pp. 4149.Google Scholar
11. Kumar, S.N., Bouyssoux, G., Gaillard, F., presented at the European Conference on Applications of Surface and Interface Analysis (ECASIA 89) Antibes, France, 1989.Google Scholar
12. Tang, J., Jing, X., Wang, B., Wang, F., Synth. Metals 24, 231 (1988).CrossRefGoogle Scholar