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Abstract:

In this study doped-silicon polymers were synthesized using the non-ionic surfactant Tween 80 as template. The obtained material was compared with silicates doped with the cationic surfactant CTAB. Both materials were synthesized by sol-gel process with tetraethoxysilane (TEOS) as silicon source. In the synthesis procedure reported herein the main difference to previous reports is that the obtained solids were dried smoothly at 55 °C avoiding surfactant calcination. The aim of this work is to obtain new biomaterials appropriate to be used for encapsulation devices in which the surfactant kept within the silica network has two roles: (1) to improve the mechanical resistance in drying-swelling processes preventing crack formation, (2) to hold and protect the encapsulated molecules keeping intact their bioactivity during TEOS polymerization. Structural features such as pore size and surface topology were studied by means of N2 adsorption, X-ray diffraction and AFM microscopy. The influence of surfactant net charge and molecular shape on the materials obtained is discussed. © 2006 Elsevier B.V. All rights reserved.

Registro:

Documento: Artículo
Título:Comparative study of the porosity induced by CTAB and Tween as silica templates
Autor:Cardinal, M.F.; Lovino, M.; Bernik, D.L.
Filiación:Instituto de Química Física de los Materiales, Ambiente y Energía (INQUIMAE), Departamento de Química Inorgánica, Analítica y Química Física, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Pabellón II, C1428EHA, Buenos Aires, Argentina
Palabras clave:AFM; Mesostructured silica; Sol-gel; Surfactant; Tween 80; Atomic force microscopy; Biomaterials; Crack initiation; Encapsulation; Mesoporous materials; Polymerization; Polymers; Porosity; Sol-gels; Surface active agents; X ray diffraction; Bioactivity; Encapsulation devices; Mechanical resistance; Silica
Año:2007
Volumen:27
Número:1
Página de inicio:75
Página de fin:79
DOI: http://dx.doi.org/10.1016/j.msec.2006.02.007
Título revista:Materials Science and Engineering C
Título revista abreviado:Mater. Sci. Eng. C
ISSN:09284931
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09284931_v27_n1_p75_Cardinal

Referencias:

  • Avnir, D., Braun, S., Lev, O., Ottolenghi, M., (1994) Chem. Mater., 6, p. 1605
  • Brinker, C.J., Scherer, G.W., (1990) Sol Gel Science, , Academic Press, New York
  • Reetz, M.T., (1997) Advanced Materials, 9, p. 943
  • Chevalier, Y., Grillet, A.C., Rahmi, M.I., Lière, C., Masure, M., Hèmery, P., Babonneau, F., (2002) Mater. Sci. Eng., C, 21, p. 143
  • Tourné-Péteilh, C., Lerner, D.A., Charnay, C., Nicole, L., Bégu, S., Devoisselle, J.M., (2003) Chem. Phys. Chem., 3, p. 283
  • Aramendía, M.A., Borau, V., Jiménez, C., Marinas, J.M., Romero, F.J., (2004) J. Colloid Interface Sci., 269, p. 394
  • Rottman, C., Grader, G., De Hazan, Y., Melchior, S., Avnir, D., (1999) J. Am. Chem. Soc., 121, p. 8533
  • Baute, D., Frydman, V., Zimmermann, H., Kababya, S., Goldfarb, D., (2005) J. Phys. Chem., B, 109, p. 7807
  • Kumar, D., Schumacher, K., du Fresne von Hohenesche, C., Grün, M., Unger, K.K., (2001) J. Colloids Surf., A Physicochem. Eng. Asp., 187-188, p. 109
  • Tarasevich, M., (1984) Am. Ceram. Soc. Bull., 63, p. 500
  • Won-Jong, K., Seung-Man, Y., (2000) Chem. Mater., 12, p. 3227
  • Gregg, S.J., Sing, K.S.W., (1967) Adsorption, Surface Areas and Porosity, , Academic Press, London
  • Dorrance, R.C., Hunter, T.F., (1972) J. Chem. Soc., Faraday Trans., 68, p. 1312
  • Ikeda, S., (1991) J. Colloid Polym. Sci., 269, p. 49
  • Lianos, P., Zana, R., (1981) J. Colloid Interface Sci., 84, p. 100
  • Orthaber, D., Bergmann, A., Glatter, O., (2000) J. Appl. Crystallogr., 33, p. 218
  • de Campo, L., Yaghmur, A., Garti, N., Leser, M.E., Folmer, B., Glatter, O., (2004) J. Colloid Interface Sci., 274, p. 251
  • Lovino, M., Cardinal, M.F., Zubiri, D.B.V., Bernik, D.L., (2005) Biosens. Bioelectron., 21, p. 857
  • Anderson, M.T., Martin, J.E., Odinek, J.G., Newcomer, P.P., (1998) Chem. Mater., 10, p. 1490
  • Zana, R., Yiv, S., Strazielle, C., Lianos, P., (1981) J. Colloid Interface Sci., 80, p. 208

Citas:

---------- APA ----------
Cardinal, M.F., Lovino, M. & Bernik, D.L. (2007) . Comparative study of the porosity induced by CTAB and Tween as silica templates. Materials Science and Engineering C, 27(1), 75-79.
http://dx.doi.org/10.1016/j.msec.2006.02.007
---------- CHICAGO ----------
Cardinal, M.F., Lovino, M., Bernik, D.L. "Comparative study of the porosity induced by CTAB and Tween as silica templates" . Materials Science and Engineering C 27, no. 1 (2007) : 75-79.
http://dx.doi.org/10.1016/j.msec.2006.02.007
---------- MLA ----------
Cardinal, M.F., Lovino, M., Bernik, D.L. "Comparative study of the porosity induced by CTAB and Tween as silica templates" . Materials Science and Engineering C, vol. 27, no. 1, 2007, pp. 75-79.
http://dx.doi.org/10.1016/j.msec.2006.02.007
---------- VANCOUVER ----------
Cardinal, M.F., Lovino, M., Bernik, D.L. Comparative study of the porosity induced by CTAB and Tween as silica templates. Mater. Sci. Eng. C. 2007;27(1):75-79.
http://dx.doi.org/10.1016/j.msec.2006.02.007