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Morphological and Magnetic Properties of Superparamagnetic Carbon-Coated Fe Nanoparticles Produced by Arc Discharge.

机译:电弧放电产生的超顺磁性碳包覆铁纳米粒子的形貌和磁性。

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摘要

Spherical carbon coated iron particles of nanometric diameter in the 5-10 nm range have been produced by arc discharge at near-atmospheric pressure conditions (using 5-8·10 4 Pa of He). The particles exhibit a crystalline dense iron core with an average diameter 7.4 ± 2.0 nm surrounded by a sealed carbon shell, shown by transmission electron microscopy (TEM), selected-area diffrac- tion (SAED), energy-dispersive X-ray analysis (STEM-EDX) and electron energy loss spectroscopy (EELS). The SAED, EDX and EELS results indicate a lack of traces of core oxidized phases showing an efficient protection role of the carbon shell. The magnetic properties of the nanoparticles have been investigated in the 5-300 K temperature range using a superconducting quantum interference device (SQUID). The results reveal a superparamagnetic behaviour with an average monodomain diameter of 7.6 nm of the nanoparticles. The zero field cooled and field cooled (ZFC-FC)magnetization curves show a blocking temperature (TB)at room temperature very suitable for biomedical applications (drug delivery, magnetic resonance imaging-MRI-, hyperthermia).
机译:通过在接近大气压的条件下(使用5-8·10 4 Pa的He)进行电弧放电,可以生产出纳米直径为5-10 nm的球形碳包覆铁颗粒。颗粒表现出结晶的致密铁芯,其平均直径为7.4±2.0 nm,被密封的碳壳包围,由透射电子显微镜(TEM),选择区域衍射(SAED),能量色散X射线分析( STEM-EDX)和电子能量损失谱(EELS)。 SAED,EDX和EELS结果表明缺乏痕量的核心氧化相,显示了碳壳的有效保护作用。使用超导量子干涉仪(SQUID)在5-300 K的温度范围内研究了纳米颗粒的磁性。结果揭示了纳米粒子的平均单畴直径为7.6nm的超顺磁性行为。零磁场冷却和磁场冷却(ZFC-FC)磁化曲线显示,室温下的阻断温度(TB)非常适合生物医学应用(药物输送,磁共振成像-MRI-,高热)。

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