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Journal of the Mexican Chemical Society

Print version ISSN 1870-249X

J. Mex. Chem. Soc vol.49 n.2 Ciudad de México  2005

 

Article

 

Electrochemical and Atomic Force Microscopy Investigations of New Materials from N-Trifluoromethanesulfonyl-1-azahexa-1,3,5-trienes Derivatives

 

Margarita Rivera*,a, Cecilio Alvarez-Toledanob, Abel Morenob, José D. Sepúlveda-Sánchezc, Tomás Hernández-Pérezd and María E. Sánchez-Vergarae

 

a Instituto de Física, Universidad Nacional Autónoma de México, Ciudad Universitaria, 04510 México, D.F., México. * e-mail: mrivera@servidor.unam.mx

b Instituto de Química, Universidad Nacional Autónoma de México, Ciudad Universitaria, 04510 México, D.F., México

c Laboratorio de Microscopía Electrónica, Universidad Autónoma Metropolitana-Iztapalapa, 09340 México, D.F., México

d Departamento de Ciencias Básicas, Universidad Autónoma Metropolitana-Azcapotzalco, 02200 México, D.F., México

e Departamento de Ingeniería Mecánica, I.T.E.S.M., Campus Ciudad de México, 14380 México, D.F., México

 

Received: November 16, 2004
Published on the web: May 3, 2005

 

Abstract

Thin films have been created on the surface of highly oriented pyrolytic graphite electrodes from chemically synthesized π-donor species by using the cyclic voltammetry technique and in situ electrochemistry-atomic force microscopy. Results indicate that it is possible to form new compounds called molecular materials from the coupling of electro-oxidized N-trifluoro-methanesulfonyl-1-azahexa-1,3,5-triene species and a [Cr(C2O4)3]3- anion. Different techniques such as AFM, SEM and EDS were employed to characterize the films morphology and composition. Results indicate that the new materials exhibited a particular electrochemical response and a different film texture depending on the chemical composition of the starting compounds.

Keywords: thin films, electrodeposition, in situ AFM

 

Resumo

Filmes finos foram crescidos sobre a superfície de elétrodos de grafito pirolizado altamente orientado a partir de precursores p-doadores utilizando a técnica cíclica de voltametria cíclica e eletroquímica-microscopia de força atômica. Os resultados indicam que é possível a formação de novos compostos chamados materiais moleculares, estes são formados pelo acoplamento de espécies N-trifluormetanosulfonil-1-aza-hexa-1,3,5-trieno eletro-oxidadas e o anion [Cr(C2O4)3]3-. Diferentes técnicas foram empregadas para caracterizar a morfologia e composição dos filmes formados. Os resultados indicam que os materiais novos exibiram uma resposta eletroquímica particular e uma textura diferente dependendo da composição química dos materiais de partida.

 

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Acknowledgments

The authors want to dedicate this work to our colleague and friend T. Hernandez-Perez. M.E. Sanchez-Vergara thanks CONACYT project number J36715-U. A. Moreno acknowledges CONACYT project number 36155.

 

References

1. Bryce, M. R.; J. Mater. Chem. 1995, 5, 1481.         [ Links ]

2. Garnier, F.; Horrowitz, G.; Peng, X.; Fichou, D.; Adv. Mat. 1990, 2, 1592.         [ Links ]

3. Plaut, D.J.; Holman, K.T.; Pivovar, A. M.; Ward, M.D.; J. Phys. Org. Chem. 2000, 13, 858.         [ Links ]

4. Cassoux, P.; De Caro, D.; Valade, L.; Casellas, H.; Daffos В.; Vergara, M.E.S.; Mol. Cryst. Liq. Cryst. 2002, 380, 45.         [ Links ]

5. Caro, J.; Garelik S.; Figueras, A.; Chem. Vap. Deposition 1996, 2, 251.         [ Links ]

6. Bryce, R.F.; Devonport, W.; Goldenberg, L.M.; Wang, C.; Chem. Comm. 1998, 9, 945.         [ Links ]

7. Figueras, A.; Garelik, S.; Caro, J.; Cifre, J.; Veciana, J.; Rovira, C.; Ribera, E.; Canadell, E.; Seffar, A.; Fontcuberta, J.; J. Cryst. Growth 1996, 166, 798.         [ Links ]

8. de Caro, D.; Sakah, J.; Basso-Bert, M.; Faulman, C.; Legros, J.P.; Ondarcuhu, T.; Joachim, C.; Aries, L.; Valade, L.; Cassoux, P.; C. R. Acad. Sci. II C 2000, 3, 675.         [ Links ]

9. Toscano, R.A.; Rosas R.; Hernández-Galindo, M.D.; Alvarez-Toledano, C.; García-Mellado, O.; Trans. Met. Chem. 1998, 23, 113.         [ Links ]

10. Triki, S.; Berezovsky, F.; Sala Pala, J.; Riou, A.; Molinie, P.; Synth. Met. 1999, 103, 1974.         [ Links ]

11. Thetiot, F.; Berezovsky, F.; Triky, S.; Sala-Pala, J.; Garcia, C.J.; Hajem, A.A.; Bouguessa, S; Fabre, J.M.; C. R. Acad. Sci., Ser. II C 2003, 6, 291.         [ Links ]

12. Moya-Cabrera, M.M.; PhD Thesis, Universidad Nacional Autónoma de México, México, 2001.

13. Hernández-Pérez, T.; Morales, M.; Batina N.; Salmón M.; J. Electrochem. Soc. 2001, 148, C369.         [ Links ]

14. Rivera, M.; Holguín, S.; Moreno, A.; Sepúlveda-Sánchez, J.D.; Hernández-Pérez, T.; J. Electrochem. Soc. 2002, 149, E84.         [ Links ]

15. Toccoli, T.; Boschetti, A.; Iannotta, S.; Synth. Met. 2001, 122, 229.         [ Links ]

16. Lund, H.; Baizer, M.M.; Organic Electrochemistry: An Introduction and A Guide, 3rd ed., Dekker: New York, 1991.         [ Links ]

17. Toscano, R.A.; Hernández-Galindo, M.D.; Rosas, R.; Garcia-Mellado, O.; Portilla, F.D.; Amabile-Cuevas, C.; Alvarez-Toledano, C.; Chem. Pharm. Bull. 1997, 45, 957.         [ Links ]

18. Saito, G.; Ferraris, J.P.; Bull. Chem. Soc. Jpn. 1980, 53, 2141.         [ Links ]

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