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High-Frequency Specific Absorption Rate of CoxFe1−xFe2O4 Ferrite Nanoparticles for Hipertermia Applications

机译:Co x Fe 1- x Fe 2 的高频比吸收率O 4 铁氧体纳米颗粒在高通透症中的应用

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摘要

The heating processes in ferrofluids in ac magnetic field depend on chemical composition, dimension, shape, magnetic properties of the nonoparticles, and rheological characteristics of the dispersing medium. By controlling these parameters, a maximum energy can be transferred to the medium. This paper was focused on determining the specific absorption rate (SAR) of a series of nanoparticles (NPs), with ferromagnetic properties at room temperature, dispersed in water to prove their possible use in medical applications. CoxFeO (with x = 0.2-1 in steps of 0.2) magnetic fluids were synthesized by the coprecipitation method and subjected to an ac magnetic field with different amplitudes and distinct frequencies. X-ray difractometry and transmission electron microscopy were used to characterize the phase and microstructure of NPs. Vibrating sample magnetometer measurements denoted a ferrimagnetic behavior of the particles at room temperature and expected superparamegnetic behavior for ferrofluids. The values of SAR obtained using a calorimetric method, at fixed frequency, increased with strength of applied field and Co content being higher at low frequencies. The results are explained in terms of relaxation times, and the experimental data were compared with theoretical predictions.
机译:交流磁场中铁磁流体的加热过程取决于化学组成,尺寸,形状,非微粒子的磁性和分散介质的流变特性。通过控制这些参数,可以将最大能量传递给介质。本文的重点是确定一系列具有室温铁磁性的纳米粒子(NPs)的比吸收率(SAR),该纳米粒子在室温下分散在水中,以证明其在医疗应用中的可能用途。通过共沉淀法合成了CoxFeO(x = 0.2-1,步长为0.2,步长为0.2),并以不同振幅和不同频率的ac磁场进行了合成。 X射线衍射和透射电子显微镜用于表征NP的相和微观结构。振动样品磁力计的测量值表明了室温下颗粒的亚铁磁行为以及铁磁流体的预期超准磁行为。使用量热法在固定频率下获得的SAR值随施加磁场强度的增加而增加,并且在低频下Co含量较高。用弛豫时间解释了结果,并将实验数据与理论预测值进行了比较。

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