Publikace: Preparation of Mn-Zn Ferrite Nanoparticles and their Silica-Coated Clusters: Magnetic Properties and Transverse Relaxivity
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Kaman, Ondřej
Kuličková, Jarmila
Herynek, Vít
Koktan, Jakub
Maryško, Miroslav
Dědourková, Tereza
Knížek, Karel
Jirák, Zdeněk
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Hydrothermal synthesis of Mn1-xZnxFe2O4 nanoparticles followed by encapsulation of this material into silica is demonstrated as a fast and facile method for preparation of efficient negative contrast agents based on clusters of ferrite crystallites. At first, the hydrothermal procedure was optimized to achieve strictly single-phase magnetic nanoparticles of Mn-Zn ferrites in the compositional range of x ≈ 0.2–0.6 and with the mean size of crystallites ≈10 nm. The products were characterized by powder X-ray diffraction, X-ray fluorescence spectroscopy, and SQUID magnetometry, and the composition close to x = 0.4 was selected for the preparation of silica-coated clusters with the mean diameter of magnetic cores ≈25 nm. Their composite structure was studied by means of transmission electron microscopy combined with detailed image analysis and magnetic measurements in DC fields. The relaxometric studies, performed in the magnetic field of B0 = 0.5 T, revealed high transverse relaxivity (r2(20 °C) = 450 s-1 mmol(Me3O4)-1 L) with a pronounced temperature dependence, which correlates with the observed temperature dependence of magnetization.
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Magnetic Nanoparticles, Mn-Zn Ferrite, Hydrothermal Synthesis, Magnetic Resonance Imaging, Transverse Relaxivity, magnetické nanočástice, Mn-Zn ferit, hydrotermální syntéza, zobrazovací magnetická rezonance, transverzální relaxivita