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首页> 外文期刊>Journal of magnetism and magnetic materials >Synthesis of FeCo magnetic nanoalloys and investigation of heating properties for magnetic fluid hyperthermia
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Synthesis of FeCo magnetic nanoalloys and investigation of heating properties for magnetic fluid hyperthermia

机译:FeCo磁性纳米合金的合成及磁流体高温加热性能的研究

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In this study, size controlled FeCo colloidal magnetic nanoalloys in the range of 11.5–37.2 nm were synthesized by surfactant assistant ball milling method. Magnetic separation technique was performed subsequent to synthesis process so as to obtain magnetic nanoalloy fluid with narrow size distribution. Particle distribution was determined by transmission electron microscope (TEM) while X-ray diffraction (XRD) measurements verified FeCo alloy formation as BCC structure. Vibrating sample magnetometer (VSM) method was used to investigate magnetic properties of nanoalloys. Maximum saturation magnetization and maximum coercivity were obtained as 172 Am2/kg for nanoparticles with the mean size of 37.2 nm and 19.4 mT for nanoparticles with the mean size of 13.3 nm, respectively. The heating ability of FeCo magnetic nanoalloys was determined through calorimetrical measurements for magnetic fluid hyperthermia (MFH) applications. Heat generation mechanisms were investigated by using linear response theory and Stoner-Wohlfarth (S-W) model. Specific absorption rate (SAR) values were obtained in the range of 2–15 W/g for magnetic field frequency of 171 kHz and magnetic field strength in between 6 and 14 mT.
机译:在这项研究中,通过表面活性剂辅助球磨法合成了尺寸控制在11.5–37.2 magneticnm范围内的FeCo胶体磁性纳米合金。在合成过程之后进行磁分离技术以获得具有窄尺寸分布的磁性纳米合金流体。通过透射电子显微镜(TEM)确定颗粒分布,而X射线衍射(XRD)测量证实FeCo合金形成为BCC结构。振动样品磁力计(VSM)方法用于研究纳米合金的磁性能。平均粒径为37.2 nm的纳米粒子的最大饱和磁化强度和矫顽力分别为172 Am2 / kg,平均粒径为13.3 nm的纳米颗粒的最大饱和磁化强度和最大矫顽力分别为172 Am2 / kg。 FeCo磁性纳米合金的加热能力是通过量热测量确定的,用于磁流体高温(MFH)应用。通过使用线性响应理论和Stoner-Wohlfarth(S-W)模型研究了发热机理。对于171 kHz的磁场频率和6至14 mT的磁场强度,获得的比吸收率(SAR)值在2–15 W / g的范围内。

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