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Zhurnal Tekhnicheskoi Fiziki, 2018 Volume 88, Issue 1, Pages 58–62 (Mi jtf6018)

This article is cited in 1 paper

Solid-State Electronics

Magnetization of paraffin-based magnetic nanocolloids

Yu. I. Dikansky, A. G. Ispiryan, S. Kunikin, A. V. Radionov

North-Caucasus Federal University, Stavropol, Russia

Abstract: Using paraffin-based magnetic nanocolloids as an example, the reasons for maxima in the temperature dependence of the magnetic susceptibility of magnetic colloids have been discussed. The behavior of these dependences in a wide temperature interval has been analyzed for colloids in solid and liquid states. It has been concluded that the maximum observed at the melting point of paraffin can be attributed to freezing Brownian degrees of freedom in magnetite coarse particles, the magnetic moment of which is intimately related to the solid matrix. The second main maximum, which arises in the solid state, is explained by the superparamagnetic-magnetically hard transition of most fine particles at lower temperatures. It has been noted that the flatness of this maximum results from the polydispersity of the magnetic nanoparticle ensemble.

Received: 28.06.2016
Revised: 25.05.2017

DOI: 10.21883/JTF.2018.01.45482.1945


 English version:
Technical Physics, 2018, 63:1, 57–61

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