Microstructure and magnetic state of Fe3O4-SiO2 colloidal particles

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Abstract

Colloidal particles consisted of individual nanosized magnetite grains on the surface of the silica cores were obtained by two-stage sol-gel technique. Size distribution and microstructure of the particles were analyzed using atomic force microscopy, X-ray diffraction and Nitrogen thermal desorption. Magnetic properties of the particles were studied by the method of the longitudinal nonlinear response. It has been shown that nanoparticles of magnetite have a size corresponding to a superparamagnetic state but exhibit hysteresis properties. The phenomenon was explained using the magnetostatic interaction model based on the hypothesis of iron oxide particles cluster aggregation on the silica surface.

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Kharitonskii, P. V., Gareev, K. G., Ionin, S. A., Ryzhov, V. A., Bogachev, Y. V., Klimenkov, B. D., … Moshnikov, V. A. (2015). Microstructure and magnetic state of Fe3O4-SiO2 colloidal particles. Journal of Magnetics, 20(3), 221–228. https://doi.org/10.4283/JMAG.2015.20.3.221

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