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A Facile Route to the Synthesis of Coated Maghemite Nanocomposites for Hyperthermia Applications

机译:一种用于热疗应用的包覆磁赤铁矿纳米复合材料合成的简便途径

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摘要

CM-dextran-covered maghemite particles for applications in magnetic hyperthermia treatments were synthesized and their physical, magnetic and morphological properties were examined. Magnetic fluids were prepared and their heating properties in an alternating magnetic field were studied. The results reveal that the particle size and the thickness of the carboxy-methyl-dextran (CM-dextran) coatings have a decisive influence on the heating properties: specific absorption rate (SAR). The majority of the magnetic dissipation comes from the Neel relaxation, while the Brown contribution is small. A thermal steady state at the selected temperature (42 °C) can be achieved using synthesized maghemite particles with proper particle morphology and by controlling the magnetic field intensity or the frequency.
机译:合成了用于磁热疗的CM-葡聚糖覆盖的磁赤铁矿颗粒,并检查了它们的物理,磁性和形态特性。制备了磁性流体,并研究了它们在交变磁场中的加热性能。结果表明,羧甲基-葡聚糖(CM-葡聚糖)涂层的粒径和厚度对加热性能具有决定性影响:比吸收率(SAR)。大部分的磁耗散来自尼尔弛豫,而布朗贡献很小。使用具有适当颗粒形态的合成磁赤铁矿颗粒并控制磁场强度或频率,可以在选定温度(42°C)下达到热稳态。

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