Abstract
Iron-containing oxides are the most important functional substance class and find a tremendous variety of applications. An attractive modern application is their use in biomedical technologies as components in systems for imaging, drug delivery, magnetically mediated hyperthermia, etc. In this paper, we report the results of the experimental investigation of submicron Y3Fe5O12 garnet particles obtained in different sizes by solution combustion synthesis (SCS) using glycine organic fuel to discuss the interdependence of peculiarities of the crystal and magnetic structure and size’s influence on its functional magnetothermal performance. A complex study including Mössbauer and Raman spectroscopy accompanied by X-ray diffractometry, SEM, and measurements of field and temperature magnetic properties were performed. The influence of the size effects and perfectness of structure on the particle set magnetization was revealed. The ranges of different mechanisms of magnetothermal effect in the AC magnetic field were determined.
Funder
Russian Foundation for Basic Research
Russian Ministry of Science and Education
Subject
General Materials Science,General Chemical Engineering
Cited by
7 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Low temperature garnet phase formation in Mn-substituted Y3Fe5-xMnxO12 nanoparticles via citrate combustion synthesis;Ceramics International;2024-09
2. Synthesis, properties, and ionic conductivity of ceramic solid electrolyte-multicomponent garnet (Y, Ln)3Fe5O12 (Ln = Gd, Er, Eu, Dy);Ionics;2024-05-02
3. Influence of the Sintering Temperature of Y3Fe4.97La0.03O12 Nanoparticles on the Resulting Structural and Magnetic Properties;Journal of Superconductivity and Novel Magnetism;2024-04-19
4. Synthesis, properties and ionic conductivity of ceramic solid electrolyte - multicomponent garnet (Y, Ln)3Fe5O12;2024-02-08
5. Unlocking the Potential of Garnet Ferrites: A Comprehensive Review on Properties, Preparation Methods, and Applications;Materials Performance and Characterization;2024-01-30