Magnetometry and Hyperthermia Study of Magnetic Fluid Preparation UNIMAG  被引量:1

Magnetometry and Hyperthermia Study of Magnetic Fluid Preparation UNIMAG

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作  者:Grigor I. Mamniashvili Solomon V. Mikeladze Тatiana О. Gegechkori Besiki V. Surguladze Giorgi N. Pichkhaia Anatoli M. Akhalkatsi Dimitri M. Daraselia Davit L. Japaridze 

机构地区:[1]Andronikashvili Institute of Physics, Ivane Javakhishvili Tbilisi State University, Tbilisi, Georgia [2]ATT Ltd., Scientific Laboratory “Magnetic Fluids in Medicine and Biology”, Tbilisi, Georgia [3]Ivane Javakhishvili Tbilisi State University, Tbilisi, Georgia [4]Natishvili Institute of Morphology, Ivane Javakhishvili Tbilisi State University, Tbilisi, Georgia

出  处:《World Journal of Condensed Matter Physics》2014年第1期6-12,共7页凝固态物理国际期刊(英文)

摘  要:We investigated the hyperthermal and magnetic properties of the stable magnetic suspension of magnetite nanoparticles. With this purpose in mind, we designed a low-frequency oscillator, 300 W, 300 KHz. A sample of the magnetic suspension was placed in the induction coil and heated up to 55°C for 30 minutes. Based on the results of measurements of transverse susceptibility, we can infer that the suspension was superparamagnetic at room temperature and transformed into the magnetic state at nitrogen temperature. Comparing the obtained experimental results with the literature data, we assessed the mean size of nanoparticles, which made up about 10 nm. Computer simulation assessment on the basis of magnetization curve gives close results.We investigated the hyperthermal and magnetic properties of the stable magnetic suspension of magnetite nanoparticles. With this purpose in mind, we designed a low-frequency oscillator, 300 W, 300 KHz. A sample of the magnetic suspension was placed in the induction coil and heated up to 55°C for 30 minutes. Based on the results of measurements of transverse susceptibility, we can infer that the suspension was superparamagnetic at room temperature and transformed into the magnetic state at nitrogen temperature. Comparing the obtained experimental results with the literature data, we assessed the mean size of nanoparticles, which made up about 10 nm. Computer simulation assessment on the basis of magnetization curve gives close results.

关 键 词:MAGNETIC NANOPARTICLES SUSPENSION HYPERTHERMIA MAGNETOMETRY NMR 

分 类 号:R73[医药卫生—肿瘤]

 

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