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Synthesis and characterization of Fe3O4 nanoparticles with perspectives in biomedical applications

机译:Fe3O4纳米粒子的合成与表征及其在生物医学中的应用前景

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Nowadays the use of magnetic nanoparticles (MNP) in medical applications has exceeded expectations. In molecular imaging, MNP based on iron oxide coated with appropriated materials have several applications in vitro and in vivo studies. For applications in nanobiotechnology these MNP must present some characteristics such as size smaller than 100 nanometers, high magnetization values, among others. Therefore the MNP have physical and chemical properties that are specific to certain studies which must be characterized for quality control of the nanostructured material. This study presents the synthesis and characterization of MNP of magnetite (Fe3O4) dispersible in water with perspectives in a wide range of biomedical applications. The characterization of the colloidal suspension based on MNP stated that the average diameter is (12.6±0.2) nm determined by Transmission Electron Microscopy where the MNP have the crystalline phase of magnetite (Fe3O4) that was identified by Diffraction X-ray and confirmed by M?ssbauer Spectroscopy. The blocking temperature of (89±1) K, Fe3O4 MNP property, was determined from magnetic measurements based on the Zero Field Cooled and Field Cooled methods. The hysteresis loops were measured at different temperatures below and above blocking temperature. The magnetometry determined that the MNP showed superparamagnetic behavior confirmed by ferromagnetic resonance.
机译:如今,磁性纳米粒子(MNP)在医疗应用中的使用已超出预期。在分子成像中,基于涂有适当材料的氧化铁的MNP在体外和体内研究中有多种应用。对于纳米生物技术的应用,这些MNP必须具有某些特性,例如小于100纳米的尺寸,高磁化值等。因此,MNP具有特定于某些研究的物理和化学性质,必须对其进行表征以控制纳米结构材料的质量。这项研究提出了磁铁矿(Fe3O4)的MNP的合成和表征,具有广泛的生物医学应用前景。基于MNP的胶体悬浮液的表征表明,通过透射电子显微镜确定的平均直径为(12.6±0.2)nm,其中MNP具有磁铁矿(Fe3O4)的结晶相,该结晶相通过X射线衍射鉴定并由M确认sssbauer光谱学。根据零场冷却和场冷却方法,通过磁测量确定(89±1)K的阻断温度Fe3O4 MNP性能。在低于和高于阻断温度的不同温度下测量磁滞回线。磁力计确定MNP显示出由铁磁共振证实的超顺磁性行为。

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