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首页> 外文期刊>Journal of nanomaterials >Arc-Discharge Synthesis of Iron Encapsulated in Carbon Nanoparticles for Biomedical Applications
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Arc-Discharge Synthesis of Iron Encapsulated in Carbon Nanoparticles for Biomedical Applications

机译:用于生物医学应用的碳纳米颗粒中铁的电弧放电合成

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摘要

The objective of the present work is to improve the protection against the oxidation that usually appears in core@shell nanoparticles. Spherical iron nanoparticles coated with a carbon shell were obtained by a modified arc-discharge reactor, which permits controlling the diameter of the iron core and the carbon shell of the particles. Oxidized iron nanoparticles involve a loss of the magnetic characteristics and also changes in the chemical properties. Our nanoparticles show superparamagnetic behavior and high magnetic saturation owing to the high purityα-Fe of core and to the high core sealing, provided by the carbon shell. A liquid iron precursor was injected in the plasma spot dragged by an inert gas flow. A fixed arc-discharge current of 40 A was used to secure a stable discharge, and several samples were produced at different conditions. Transmission electron microscopy indicated an iron core diameter between 5 and 9 nm. Selected area electron diffraction provided evidences of a highly crystalline and dense iron core. The magnetic properties were studied up to 5 K temperature using a superconducting quantum interference device. The results reveal a superparamagnetic behaviour, a narrow size distribution (σg=1.22), and an average diameter of 6 nm for nanoparticles having a blocking temperature near 40 K.
机译:本工作的目的是改善对通常在核壳纳米粒子中出现的氧化的保护作用。通过改进的电弧放电反应器获得了涂有碳壳的球形铁纳米颗粒,该反应器可以控制颗粒的铁核和碳壳的直径。氧化的铁纳米颗粒涉及磁特性的损失以及化学性质的变化。由于核的高纯度α-Fe以及碳壳提供的高核密封性,我们的纳米粒子表现出超顺磁行为和高磁饱和度。将液态铁前驱物注入由惰性气流拖曳的等离子体斑点中。使用40 aA的固定电弧放电电流来确保稳定的放电,并在不同条件下生产了多个样品。透射电子显微镜显示铁芯直径在5至9nm之间。选定区域的电子衍射提供了高结晶度和致密铁芯的证据。使用超导量子干涉装置研究了高达5 K温度的磁性。结果显示,对于具有接近40 K的封闭温度的纳米粒子,其超顺磁性行为,窄的尺寸分布(σg= 1.22)和6 diameternm的平均直径。

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