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Portugaliae Electrochimica Acta

Print version ISSN 0872-1904

Port. Electrochim. Acta vol.26 no.1 Coimbra  2008

 

Electrosynthesis and Characterisation of Poly(3,4-Ethylenedioxythiophene) Films Incorporating Ferrocene

 

 

J.F. Cabrita, J.P. Correia*

 

Centro de Química e Bioquímica, Faculdade de Ciências da Universidade de Lisboa, Campo Grande, 1749-016 Lisboa, Portugal

 

Received 31st July 2007; accepted 10th September 2007

 

 

Abstract

Poly(3,4-ethylenedioxythiophene) (PEDOT) films were potentiostatically and potentiodynamically prepared on Pt electrodes from acetonitrile monomer solutions containing TBAPF6 or FcPF6 (or both). The polymer modified electrodes obtained with different growth charges were characterized electrochemically by cyclic voltammetry in a monomer free solution. The results point to the effective immobilization of the ferrocenium ion inside the PEDOT matrix by entrapment during the polymer synthesis in potentiostatic mode. It is discussed the influence of the presence of the organometallic cation in the polymerization solution in the growth process and the efectiveness of the incorporation of the metallocene is analysed on the basis of the electrochemical data collected for the films redox conversion.

Keywords: conducting polymers, ferrocene, immobilization.

 

 

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References

 

1.  A.F. Barrero, A. Rosales, J.M. Cuerva, A. Gansäuer, J.E. Oltra, Tetrahedron Letters 44 (2003) 1079-1082.        [ Links ]

2.  A.G.M. Barrett, Y.R. de Miguel, Tetrahedron 58 (2002) 3785-3792.

3.  A. Galal, J. Sol. State Electrochem. 2 (1998) 7-15.

4.  N.C. Foulds, C.R. Lowe, Anal. Chem. 60 (1988) 2473-2478.

5.  M.A. Vorotyntsev, M. Casalta, E. Pousson, L. Roullier, G. Boni, C. Moise, Electrochim. Acta 46(2001) 4017-4033.

6.  M.W. McKittrick, C.W. Jones, J. Catalysis 227 (2004) 186-201.

7.  M. Skompska, M.A. Vorotyntsev, M. Refczynska, J. Goux, E. Lesniewska, G. Boni, C. Moise, Electrochim. Acta 51(2006) 2108-2119.

8.  J. Roncali, P. Blanchard, P. Frère, J. Mater. Chem. 15 (2005) 1589-1610.

9.  L. Pigani, A. Heras, A. Colina, R. Seeber, J.L.-Palacios, Electrochem. Commun. 6(2004) 1192-1198.

10.  A. Zykwinska, W. Domagala, M. Lapkowski, Electrochem. Commun. 5(2003) 603-608.

11.  A. Zykwinska, W. Domagala, B. Pilawa, M. Lapkowski, Electrochim. Acta 50(2005) 1625-1633.

12.  J.-C. Vidal, E.G.-Ruiz, J.-R. Castillo, Microchim. Acta 143(2003) 93-111.

13.  H. Randriamahazaka, V. Noël, S. Guillerez, C. Chevrot, Electroanal. Chem. 585(2005) 157-166.

14.  C.A. Cutler, M. Bouguettaya, J.R. Reynolds, Adv. Mater. 14 – 9(2002) 684-688.

15.  P. Damlin, C. Kvarnström, A. Nybäck, M. Käldström, A. Ivaska, Electrochimica Acta 51 (2006) 6060–6068.

16.  P. Danielsson, J. Bobacka, A. Ivaska, J. Solid State Electrochem. 8(2004) 809–817.

17.  A. Zykwinska, W. Domagala, A. Czardybon, B. Pilawa, M. Lapkowski, Electrochimica Acta 51 (2006) 2135–2144.

18.  H.J. Spencer, P.J. Skabara, M. Giles, I. McCulloch, S.J. Colesc, M.B. Hursthousec, J. Mater. Chem. 15(2005) 4783–4792.

19.  X. Du, Z. Wang, Electrochim. Acta 48(2003) 1713-1717.

20.  P.-H. Aubert, L. Groenendaal, F. Louwet, L. Lutsen, D. Vanderzande, G. Zotti, Synth. Met. 126 (2002) 193-198.

21.  S. Kirchmeyer, K. Reuter, J. Mater. Chem. 15(2005) 2077-2088.

22.  M. Ocypa, A. Michalska, K. Maksymiuk, Electrochimica Acta 51 (2006) 2298–2305.

23.  S.-W. Huang, K.-C. Ho, Solar Energy Materials & Solar Cells 90 (2006) 491–505.

24.  S. Sindhu, K.N. Rao, S. Ahuja, A. Kumarb, E.S.R. Gopal, Materials Science and Engineering B 132 (2006) 39–42.

25.  T.A. Bendikov, T.C. Harmonb,Analytica Chimica Acta 551 (2005) 30–36.

26.  B.J. Holliday, T.M. Swager, Chem. Commun. (2005) 23–36.

27.  J. Chen, A.K. Burrell, G.E. Collis, D.L. Officer, G.F. Swiegers, C.O. Too, G.G. Wallace, Electrochimica Acta 47 (2002) 2715-2724.

28.  Y. Zhu, M.O. Wolf, J. Am. Chem. Soc.  122(2000) 10121-10125.

29.  M. Besbes, G. Trippé, E. Levillain, M. Mazari, F. Le Derf, I.F. Perepichka, A. Derdour, A. Gorgues, M. Sallé, J. Roncali, Adv. Mater. 13 – 16(2001) 1249-1252.

30.  A. Deronzier, J.-C. Moutet, Coord. Chem. Rev. 147 (1996) 339-371.

31.  L. Groenendaal, F. Jonas, D. Freitag, H. Pielartzik, J.R. Reynolds, Adv. Mater. 12 (2000) 481-494.

32.  L. Groenendaal, G. Zotti, P.-H. Aubert, S.M. Waybright, J.R. Reynolds, Adv. Mater. 15 (2003) 855-879.

33.  C. Kvarnström, H. Neugebauer, S. Blomquist, H.J. Ahonen, J. Kankare, A. Ivaska, Electrochim. Acta 44(1999) 2739-2750.

 

 

* Corresponding author. E-mail address: jorge.correia@fc.ul.pt

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