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The heating effect of iron-cobalt magnetic nanofluids in an alternating magnetic field: application in magnetic hyperthermia treatment

机译:铁钴磁性纳米流体在交变磁场中的热效应:在磁热疗中的应用

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摘要

In this research, FeCo alloy magnetic nanofluids were prepared by reducing iron(III) chloride hexahydrate and cobalt(II) sulfate heptahydrate with sodium borohydride in a water/CTAB/hexanol reverse micelle system for application in magnetic hyperthermia treatment. X-ray diffraction, electron microscopy, selected area electron diffraction, and energy-dispersive analysis indicate the formation of bcc-structured iron-cobalt alloy. Magnetic property assessment of nanoparticles reveals that some samples are single-domain superparamagnetic, while others are single- or multi-domain ferromagnetic. The stability of the magnetic fluids was achieved by using a CTAB/1-butanol surfactant bilayer. Results of Gouy magnetic susceptibility balance experiments indicate good stability of FeCo nanoparticles even after dilution. The inductive properties of corresponding magnetic fluids including temperature rise and specific absorption rate were determined. Results show that with increasing of the nanoparticle size in the single-domain size regime, the generated heat increases, indicating the significant effect of the hysteresis loss. Finally, the central parameter controlling the specific absorption rate of nanoparticles was introduced, the experimental results were compared with those of the Stoner-Wohlfarth model and linear response theory, and the best sample for magnetic hyperthermia treatment was specified.
机译:在这项研究中,FeCo合金磁性纳米流体是通过在水/ CTAB /己醇反胶束体系中用硼氢化钠将六水合氯化铁(III)六水合物和六水合钴(II)硫酸钴七水合物还原而制备的,用于磁性高温治疗。 X射线衍射,电子显微镜,选定区域电子衍射和能量色散分析表明,形成了密实结构的铁钴合金。纳米粒子的磁性评估表明,有些样品是单畴超顺磁性的,而另一些样品是单畴或多畴的铁磁。磁性流体的稳定性是通过使用CTAB / 1-丁醇表面活性剂双层来实现的。 Gouy磁化率平衡实验的结果表明,即使稀释后,FeCo纳米颗粒也具有良好的稳定性。确定了相应磁性流体的感应特性,包括温度升高和比吸收率。结果表明,在单畴尺寸方案中,随着纳米颗粒尺寸的增加,产生的热量增加,这表明磁滞损耗的显着影响。最后,介绍了控制纳米粒子比吸收率的中心参数,将实验结果与Stoner-Wohlfarth模型和线性响应理论进行了比较,并指定了最佳的磁热疗样品。

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