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http://dx.doi.org/10.4283/JMAG.2015.20.3.221

Microstructure and Magnetic State of Fe3O4-SiO2 Colloidal Particles  

Kharitonskii, P.V. (Saint Petersburg Electrotechnical University "LETI")
Gareev, K.G. (Saint Petersburg Electrotechnical University "LETI")
Ionin, S.A. (Saint Petersburg Electrotechnical University "LETI")
Ryzhov, V.A. (National Research Centre "Kurchatov Institute")
Bogachev, Yu.V. (Saint Petersburg Electrotechnical University "LETI")
Klimenkov, B.D. (Saint Petersburg Electrotechnical University "LETI")
Kononova, I.E. (Saint Petersburg Electrotechnical University "LETI")
Moshnikov, V.A. (Saint Petersburg Electrotechnical University "LETI")
Publication Information
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.
Keywords
magnetite; silica; colloidal particles; superparamagnetism; longitudinal nonlinear response; magnetostatic interaction;
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1 C. Sun, J. S. H. Lee, and M. Q. Zhang, Advanced Drug Delivery Reviews 60, 1252 (2008).   DOI   ScienceOn
2 A. K. Gupta and M. Gupta, Biomaterials 26, 3995 (2005).   DOI   ScienceOn
3 R. Olsvik, T. Popovic, E. Skjerve, K. S. Cudjoe, E. Hornes, J. Ugelstad, and M. Uhlen, Clinical Microbiology Reviews 7, 43 (1994).   DOI
4 M. N. Widjojoatmodjo, A. C. Fluit, R. Torensma, and J. Verhoef, Journal of Immunological Methods 165, 11 (1993).   DOI   ScienceOn
5 N. Kawai, D. Kobayashi, T. Yasui, Y. Umemoto, K. Mizuno, A. Okada, K. Tozawa, T. Kobayashi, and K. Kohri, Vascular Cell 6, 15 (2014).   DOI   ScienceOn
6 I. S. Smolkova, N. E. Kazantseva, K. N. Makoveckaya, P. Smolka, P. Saha, and A. M. Granov, Materials Science and Engineering C 48, 632-641 (2015).   DOI   ScienceOn
7 S. Y. Choi, B. K. Kwak, H. J. Shim, J. Lee, S. U. Hong, and K. A. Kim, Diagnostic and Interventional Radiology 21, 47 (2015).   DOI   ScienceOn
8 K.-H. Lee, E. Liapi, J. A. Vossen, M. Buijs, V. P. Ventura, C. Georgiades, K. Hong, I. Kamel, M. S. Torbenson, and J.-F. H. Geschwind, J. Vasc. Interv. Radiol. 19, 1490 (2008).   DOI   ScienceOn
9 S. Y. Gan and M. Chow, Journal of Materials Chemistry 14, 2781 (2004).   DOI   ScienceOn
10 A. Kaushik, R. Khan, P. R. Solanki, P. Pandey, J. Alam, S. Ahmad, and B. D. Malhotra, Biosensors and Bioelectronics 24, 676 (2008).   DOI   ScienceOn
11 J. Sun, S. B. Zhou, P. Hou, Y. Yang, J. Weng, X. H. Li, and M. Y. Li, Journal of Biomedical Materials Research 80A, 333 (2006).
12 M. D. Butterworth, L. Illum, and S. S. Davis, Colloids and Surfaces A: Physicochemical and Engineering Aspects 179, 93 (2001).   DOI
13 Q. Xu, X. J. Bian, L. L. Li, X. Y. Hu, M. Sun, D. Chen, and Y. Wang, Electrochemistry Communications 10, 995 (2008).   DOI   ScienceOn
14 L. Neel and C. R. Hebd, Seances Acad. Sci. 228, 664 (1949)
15 Ann. Geophys. (C.N.R.S.) 5, 99 (1949).
16 J. L. Dormann, L. Bessais, and D. Fiorani, J. Phys. C 21, 2015 (1988).   DOI   ScienceOn
17 C. P. Bean and J. D. Livingston, J. Appl. Phys. 30, 120 (1959).   DOI
18 B. D. Gullity and C. D. Graham, Introduction to Magnetic Materials, IEEE Press, WILEY (2009) p. 383.
19 S. Bedanta and W. Kleemann, J. Phys. D: Appl. Phys. 42, 013001 (2009).   DOI
20 S. Gangopadhyay, G. C. Hadjipanayis, C. M. Sorensen, and K. J. Klabunde, IEEE Trans. Magn. 29, 2619 (1993).   DOI   ScienceOn
21 R. W. Chantrell, In: Magnetic Hysteresis in Novel Magnetic Materials, by ed. G. C. Hadjipanayis, NATO Advanced Study Institute, Series E: Applied Sciences, vol. 338, Kluwer, Dordrecht (1997) p. 21.
22 R. W. Chantrell, M. El-Hilo, and K. O'Grady, IEEE Trans. Magn. 27, 3570 (1991).   DOI   ScienceOn
23 M. El-Hilo, K. O'Grady, and R. W. Chantrell, J. Magn. Magn. Mater. 114, 295 (1992).   DOI   ScienceOn
24 K. O'Grady, M El-Hilo, and R. W. Chantrell, IEEE Trans. Magn. 29, 2608 (1993).   DOI   ScienceOn
25 W. Luo, S. R. Nagel, T. F. Rosenbaum, and R. E. Rosensweig, Phys. Rev. Lett. 67, 2721 (1991).   DOI   ScienceOn
26 S. Morup and E. Tronc, Phys. Rev. Lett. 72, 3278 (1994).   DOI   ScienceOn
27 S. Morup, F. Bodker, P. V. Hendriksen, and S. Linderoth, Phys. Rev. B 52, 287 (1995).   DOI   ScienceOn
28 Yu. V. Bogachev, K. G. Gareev, L. B. Matyushkin, V. A. Moshnokov, and A. N. Naumova, Phys. of the Sol. St. 55, 2313 (2013).
29 R. Massart. IEEE Trans. Magn. 17, 1247 (1981).   DOI
30 I. E. Kononova, K. G. Gareev, V. A. Moshnikov, V. I. Al'myashev, and O. V. Kucherova, Inorganic Materials 50, 68 (2014).   DOI   ScienceOn
31 V. I. Al'myashev, K. G. Gareev, S. A. Ionin, V. S. Levitskii, V. A. Moshnikov, and E. I. Terukov, Physics of the Solid State 56, 2155 (2014).   DOI
32 V. A. Ryzhov, I. I. Larionov, and V. N. Fomichev. Zh. Tekh. Fiz. 66, 183 (1996) [Tech. Phys. 41, 620 (1996)]
33 V. A. Ryzhov, and E. I. Zavatskii, Patent No 2507525, registered in Russia 20.02.2014.
34 Yu. V. Bogachev, Ju. S. Chernenco, K. G. Gareev, I. E. Kononova, L. B. Matyushkin, V. A. Moshnikov, and S. S. Nalimova, Appl. Magn. Reson. 45, 329 (2014).   DOI
35 D. Shaw. Introduction to Colloid and Surface Chemistry. Elsevier (1992) p. 320.
36 I. E. Gracheva, G. Olchowik, K. G. Gareev, V. A. Moshnikov, V. V. Kuznetsov, and J. M. Olchowik, J. Phys. Chem. Sol. 74, 656 (2013).   DOI   ScienceOn
37 I. E. Gracheva, V. A. Moshnikov, and K. G. Gareev, Glass Phys. Chem. 39, 311 (2013).   DOI
38 G. F. Goya, T. S. Berquo, F. C. Fonseca, and M. P. Morales, J. Appl. Phys. 94, 3520 (2003).   DOI   ScienceOn
39 L. R. Bickford, J. M. Brownlow, and F. R. Penoyer, Proc. IEEE 104, 238 (1957).
40 F. Bodker, S. Mørup, and S. Linderoth, Phys. Rev. Lett. 72, 282 (1994).   DOI   ScienceOn
41 V. A. Ryzhov, I. V. Pleshakov, A. A. Nechitailov, N. V. Glebova, E. N. Pyatyshev, A. V. Malkova, I. A. Kisilev, and V. V. Matveev, Appl. Magn. Reson. 46, 339 (2014).
42 P. V. Kharitonskii, A. M. Frolov, S. A. Boev, V. S. Rudnev, I. A. Tkachenko, V. P. Morozova, I. V. Lukiyanchuk, M. V. Adigamova, and A. Yu. Ustinov, Sol. St. Phen. 215, 200 (2014).   DOI