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首页> 外文期刊>ACS Omega >Induction Heating Analysis of Surface-Functionalized Nanoscale CoFe2O4 for Magnetic Fluid Hyperthermia toward Noninvasive Cancer Treatment
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Induction Heating Analysis of Surface-Functionalized Nanoscale CoFe2O4 for Magnetic Fluid Hyperthermia toward Noninvasive Cancer Treatment

机译:表面官能化纳米级COFE2O4对非侵入性癌症治疗的表面官能化纳米级COFE2O4的感应加热分析

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Oleic acid-coated cobalt ferrite nanoparticles were synthesized using the chemical co-precipitation route and characterized by standard techniques for structure, morphology, and magnetic properties analysis. The Rietveld refined X-ray diffraction (XRD) pattern of CoFe_(2)O_(4) nanoparticles indicated the formation of a cubic-spinel single-phase structure with the Fd 3?m space group. The average crystallite size (~12 nm) confirmed the nanocrystalline appearance of the prepared CoFe_(2)O_(4) nanoparticles. Transmission electron microscopy (TEM) images revealed the spherical nature of both (CoFe_(2)O_(4)) and (OA-CoFe_(2)O_(4)) samples. The absorption bands in the Fourier transform infrared (FT-IR) spectrum at ~3418, 3026, 1628, 1404, 1068, 845, 544, and 363 cm~(–1) affirmed the spinel ferrite formation and OA attachment. The M–H curve recorded at room temperature showed the superparamagnetic nature of the CoFe_(2)O_(4) nanoparticles with moderate saturation magnetization (~78 emu/gm). The blocking temperature of the prepared CoFe_(2)O_(4) nanoparticles obtained from the field-cooled and zero-field-cooled (FC–ZFC) curve was estimated to be 144 K. Further, the characterized surface-modified CoFe_(2)O_(4) was then added in ethylene glycol/water with various concentrations and characterized by the induction heating technique for the evaluation of their self-heating characteristics. A series of temperature versus time measurements were made by varying the ethylene glycol/water proportion for better understanding of the self-heating characteristics of the prepared CoFe_(2)O_(4) nanoparticles. All of the findings display the applicability of the surface-modified CoFe_(2)O_(4) nanoparticles in magnetic fluid hyperthermia toward noninvasive cancer treatment and other bio-applications.
机译:使用化学共沉淀途径合成油酸涂覆的钴铁氧体纳米颗粒,其特征在于结构,形态和磁性分析的标准技术。 COFE_(2)O_(4)纳米颗粒的RIETVELD精制的X射线衍射(XRD)图案表明,形成了与F 1〜D 3 2的立方尖晶石单相结构。平均微晶尺寸(〜12nm)证实了制备的CoFe_(2)O_(4)纳米颗粒的纳米晶体外观。透射电子显微镜(TEM)图像显示(CoFe_(2)O_(4))和(OA-Cofe_(2)O_(4))样本的样本。傅里叶变换红外(FT-IR)光谱中的吸收带在〜3418,3026,1628,1404,1068,845,544和363cm〜(-1)中肯定了尖晶石铁氧体形成和OA附着。在室温下记录的M-H曲线显示出具有中等饱和磁化强度的CoFe_(2)O_(4)纳米颗粒的超顺磁性(〜78 emu / gm)。从现场冷却和零场冷却(Fc-ZFC)曲线获得的制备的COFE_(2)O_(4)纳米颗粒的封闭温度估计为144K。此外,所表征的表面改性COFE_(2然后用各种浓度在乙二醇/水中加入O_(4),其特征在于感应加热技术,用于评估其自加热特性。通过改变乙二醇/水比例来更好地理解制备的CoFe_(2)o_(4)纳米颗粒的自加热特性来制备一系列温度与时间测量。所有发现显示了表面改性的CoFe_(2)O_(4)纳米粒子在磁性流体热疗中的非侵入性癌症治疗和其他生物应用的适用性。

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