Journal Article

·2020

Structural Transformations of Ni1 – xCuxFe2O4 Nanoparticles Depending on the Number of Cu Ions

A. S. Kamzin , A. A. Valiullin , А. Bingolbali YTU , N. Doğan YTU

Physics of the Solid State

Abstract

Changes in the structure and properties of the Ni1 – xCuxFe2O4 ferrites-spinel magnetic nanoparticles depending on the Cu ion concentration (0 ≤ x ≤ 1.0) have been studied using Mossbauer spectroscopy. It has been found that, with the increasing of the Cu ion concentration, the structure of nanoparticles changes from the structure of reverse spinel (NiFe2O4) to that of mixed spinel (CuFe2O4). It has been shown that the hydrothermal synthesis method makes it possible to obtain single-phase nanoscale particles with a very narrow size distribution and ideal magnetic ordering, which are promising for biomedical applications. The relationship between the distribution of cations on sublattices, the value of the inversion parameter, and the Cu ion concentration has been established.

Keywords

Spinel Materials science Mössbauer spectroscopy Nanoparticle Ion Hydrothermal circulation Nanoscopic scale Analytical Chemistry (journal) Chemical engineering Nanotechnology Crystallography Metallurgy Chemistry Chromatography

Subject Areas

Magnetic Properties and Synthesis of Ferrites ·Materials Chemistry ·Physical Sciences
Iron oxide chemistry and applications ·Renewable Energy, Sustainability and the Environment ·Physical Sciences
Multiferroics and related materials ·Electronic, Optical and Magnetic Materials ·Physical Sciences

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