SYNTHESIS OF THE OPTIMAL MAGNETIC SYSTEM WITH PERMANENT MAGNETS FOR DRAG DELIVERY OF MAGNETIC NANOPARTICLES IN BIOLOGICAL ENVIRONMENT
ARTICLE_1_PDF (Українська)

Keywords

magnetic systems
permanent magnets
nanoparticles
magnetic forces
optimization магнитная система
постоянные магниты
наночастицы
магнитная сила
оптимизация

How to Cite

[1]
Подольцев , А. and Кондратенко , И. 2013. SYNTHESIS OF THE OPTIMAL MAGNETIC SYSTEM WITH PERMANENT MAGNETS FOR DRAG DELIVERY OF MAGNETIC NANOPARTICLES IN BIOLOGICAL ENVIRONMENT . Tekhnichna Elektrodynamika. 4 (Jun. 2013), 003.

Abstract

The approach of synthesis of the optimal magnetic system with permanent magnets, creating of maximum magnetic force on nanoparticles is proposed. This approach consists of that originally gets out base variant of the magnetic system, a row is built on his basis geometrically similar systems and from this row the system gets out with maximal in size forces, operating on particles. It is shown that parameters of optimal magnetic system depend on distance of magnetic particle to its surface and from physical proper[1]ties of particle, in particular, whether are it one-domain or multi-domain . The example of construction of the optimum magnetic system is shown and results of distribution of the magnetic field and force obtained by numeral calculation and experimental method are considered. References 10, figures 9.

ARTICLE_1_PDF (Українська)

References

Borovik E.S., Eremenko V.V., Milner A.S. Lectures on magnetism. – Мoskva: Fiziko-matematicheskaia literatura, 2005. – 510 p. (Rus)

Voldek A.I. Induction magnetohydrodynamic machine with liquid armature. – Leningrad: Energiia, 1970. – 272 p. (Rus)

Gorbik P.P., Chekhun V.F., Shpak A.P. Physico-chemical and medico-biological aspects of the creation of nanocomposites // Mezhdunarodnaia konferentciia "Nanorozmirni systemy: budova,vlastyvosti, tekhnologii". – Kyiv, 21-23 November, 2007. – 422 p. (Rus)

Jackson J. Classical electrodynamics. – Мoskva: Mir, 1965. – 532 p. (Rus)

Korn G., Korn T. Handbook on mathematics. – Мoskva: Nauka, 1974. – 832 p. (Rus)

Rashchepkin A.P., Arkhipov A.V. Magnetic field and electrodynamics forces in linear motor with permanent magnets // Visnyk Kremenchutskogo Derzhavnoho Politekhnichnoho Universytetu. – 2005. – Vol. 4 (33). – Pp. 81–84. (Rus)

Rosenfeld L.G., Moskalenko V.F., Chekman I.S., Movchan B.A. Nanotechnology and nanomedicine // Ukrainskyi me dychnyi chasopys. – 2008. – № 5. – Pp. 63–68. (Rus)

Comsol Multiphysics. – www.comsol.com

Jordan et al. Magnetic fluid hyperthermia // J. of Magnetism and Magn. Materials. – 1999. – 201 (1999). – Pp. 413–419.

Pankhurst Q.A. Applications of magnetic nanoparticles in biomedicine // J.Phys. D. Appl. Phys. – 2003. – 36 (2003). – Pp. 167–181.

Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

Copyright (c) 2023 Array

Abstract views: 61 | PDF Downloads: 13

Downloads