Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5491191 | Journal of Magnetism and Magnetic Materials | 2017 | 4 Pages |
Abstract
In this study, the Mg1âxZnxFe2O4 nanoparticles (x=0-0.9) were prepared by sol-gel method. These ferrites exhibit an inverse spinel structure and the lattice parameter increases as the substitution of Zn2+ ions is increased. At lower Zn content (0.1â¤xâ¤0.5), saturation magnetization (Ms) increases, while it decreases at higher Zn content (xâ¥6). The remnant magnetization (0.17-2.0 emu/g) and coercive field (6.0-60 Oe) indicate a ferrimagnetic behavior. The average core diameter of selected ferrites is around 15 nm and the nanoparticles morphology is quasi spherical. The heating ability of some Mg0.9Zn0.1Fe2O4 and Mg0.7Zn0.3Fe2O4 aqueous suspensions indicates that the magnetic nanoparticles can increase the medium temperature up to 42 °C in a time less than 10 min
Keywords
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Condensed Matter Physics
Authors
Pamela Yajaira Reyes-RodrÃguez, Dora Alicia Cortés-Hernández, José Concepción Escobedo-Bocardo, José Manuel Almanza-Robles, Héctor Javier Sánchez-Fuentes, Argentina Jasso-Terán, Laura Elena De León-Prado, Juan Méndez-Nonell,