The Influence of Magnetic Fields on Electrophoretic Processes in Magnetic Colloids with Different Stabilization Mechanisms

Author:

Dikansky Yurii I.1,Drozdov Andrey S.2ORCID,Eskova Inna V.1,Beketova Elena S.1

Affiliation:

1. Department of Experimental Physics, Physical Technical Faculty, North Caucasus Federal University, 355017 Stavropol, Russia

2. Laboratory of Nanobiotechnologies, Moscow Institute of Mechanics and Technology, Institute Ave. 9, 141701 Dolgoprudny, Russia

Abstract

Electrophoretic nanostructuring is a promising approach for the creation of functional surfaces and active layers. The potency of this approach may be further enhanced by additional factors of various natures, such as magnetic fields. In this work, we have studied the process of electrophoresis in thin layers of water- and kerosene-based magnetic liquids and the effect of additional magnetic fields on the occurring processes. It was found that the electrophoresis process can be significantly affected by inhomogeneous magnetic fields. The possibility of compensating electrophoresis processes in such systems by means of inhomogeneous magnetic field influence was shown. Structural changes in magnetic colloids on hydrocarbon bases under the influence of an electric field have been studied. The role of electrohydrodynamic flows arising in this process is considered, and the influence of the magnetic field on the configuration of the formed labyrinth structure is studied. The dependence of the threshold value of the electric field strength corresponding to the emergence of the structure on the temperature and additionally applied magnetic field has been established. The obtained results could contribute to the development of an original method for determining the charge and magnetic moment of a single nanoparticle.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

MDPI AG

Subject

Materials Chemistry,Chemistry (miscellaneous),Electronic, Optical and Magnetic Materials

Reference69 articles.

1. Rosensweig, R.E. (2014). Ferrohydrodynamics, Dover Publications.

2. Spin-glass-like complex susceptibility of frozen magnetic fluids;Taketomi;Phys. Rev. E,1998

3. Blum, E.Y., Morozov, M.M., and Tseberg, A.O. (1989). Magnetic Fluids, Zinatne.

4. Recent progress in ferrofluids research: Novel applications of magnetically controllable and tunable fluids;Rinaldi;Soft Matter,2014

5. Ferrofluids: Synthetic Strategies, Stabilization, Physicochemical Features, Characterization, and Applications;Joseph;Chempluschem,2014

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