Hostname: page-component-848d4c4894-2xdlg Total loading time: 0 Render date: 2024-07-05T06:24:22.022Z Has data issue: false hasContentIssue false

Influence of Cyclodextrin in the Synthesis of Magnetite

Published online by Cambridge University Press:  01 February 2011

L. A. Cobos Cruz
Affiliation:
Instituto de Ing. y Tecnología, Universidad Autónoma de Cd. Juárez, Cd. Juárez Chih., México
C. A. Martínez Perez
Affiliation:
Instituto de Ing. y Tecnología, Universidad Autónoma de Cd. Juárez, Cd. Juárez Chih., México
A Martínez Villafañe
Affiliation:
Centro de Investigaciones en Materiales Avanzados, Chihuahua, Chih., México
J. A. Matutes Aquino
Affiliation:
Centro de Investigaciones en Materiales Avanzados, Chihuahua, Chih., México
J. R. Farias Macilla
Affiliation:
Centro de Investigaciones en Materiales Avanzados, Chihuahua, Chih., México
P. E. García Casillas
Affiliation:
Instituto de Ing. y Tecnología, Universidad Autónoma de Cd. Juárez, Cd. Juárez Chih., México
Get access

Abstract

Cyclodextrin (CD) has been studied intensively due to its ability to form inclusion complexes with a variety of guest molecules in the solid state. A few studies have paid attention to the use of CD to facilitate the synthesis of inorganic nanoparticles. In this work the synthesis of magnetite (M) is made in the presence of CD. The particle size of the inorganic material is controlled by the presence of CD, in which spherical particles of few nanometers are grown. The synthesis of Fe3O4 (M) in the presence of α-cyclodextrin (α-CD) and β-cyclodextrin (βCD) is described. The formation of an M-CD complex is studied in both cases by Fourier transform infrared spectroscopy (FT-IR) in order to elucidate the chemical bonding of the complex. The morphology and size of the particles are determined by Field Emission Scanning Electron Microscopy (FESEM) and software. X-ray diffraction (XRD) is used to confirm the formation of magnetite.

Type
Research Article
Copyright
Copyright © Materials Research Society 2010

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

1. Rauf Khan, A., Stine, K. J., and Dsouza, V. T., Chem. Rev. 98 (1998) 19771996 Google Scholar
2. Sinisterra, R.D., Avila-Campo, M.J, Tortamano, N., Rocha, R.G.,, Inclusion Phenom. Macrocyclic Chem., 40 (2001) 297.Google Scholar
3. Saenger, W., Angew, A. Chem. Int. Ed. Engl., 19 (1980) 344.Google Scholar
4. Szehtkum, et al, Cyclodextrin thecnology, kluwer academic publisher: Dordrecht, the Netherlands, (1988)Google Scholar
5. Sang, W. L., Seongtae, B., Takemura, Y., Kim, T. M., Kim, J., Lee, H. J., Zurn, S. and Sung Kim, C., J. Magn. Magn. Mats, 310, 2 (2007) 28682870.Google Scholar
6. Avilés, M.O., Chen, H., Ebner, A. D., Rosengart, A. J., Kaminski, M. D. and Ritter, J. A., J. Magn Magc Mat, 311, 1 (2007) 306311.Google Scholar
7. Sieben, S., Bergemann, C., LuKbbe, A., Brockmann, B., Rescheleit, D. Journal of Magnetism and Magnetic Materials 225 (2001) 175179 Google Scholar
8. Alexiou, Christoph,2 Arnold, Wolfgang, Klein, Roswitha J., Parak, Fritz G., Hulin, Peter, Bergemann, Christian, Erhardt, Wolfgang, Wagenpfeil, Stefan, and Lübbe, Andreas S., CANCER RESEARCH 60, 66416648, December 1, 2000]Google Scholar
9. Petri-Fink, A, Chastellain, M., Juillerat-Jeanneret, L.. and Hofmann, H. Biomaterials, 26, 15 (2005) 26852694.Google Scholar
10. Tanga Zhonga, N.J.., Jianga, H.Y.., Wua, X.L., Liua, W.., Du, Y.W., J. of Magn and Magn Mats 282 (2004) 9295.Google Scholar
11. Palla, B.J., Shah, D.O., Garcia Casillas, P., and Matutes-Aquino, J., Journal of Nanoparticle Research, 2, 1 (1999) 215–221Google Scholar
12. Ohta, S., terada, A., thin Solid Film, 73 (1986) 143.Google Scholar
13. Matutes-Aquino, J., García Casillas, P., Ayala-Valenzuela, O., and García-García, S., Materials Letters, 38, (1999) 173177 Google Scholar
14. Schewetmann, U. & Fitzpatrick, r.W., Catena Suppl. 21, Catena Verlar., Cremlinge, (1992) 730 Google Scholar