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Morphology, Chemical Composition, and Magnetic Properties of Arc Discharge Fe–C Soot

机译:形态学,化学成分和电弧放电Fe-C烟灰的磁性

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The present research aims of elaborating a new manufacturing technology of magnetic nanoparticles for ferrofluid applications. Composite Fe–C anode sputtering in a low-pressure arc discharge has been used to produce Fe-containing nanoparticles on a carbon matrix. The chemical composition and size distribution function of iron containing nanoparticles have been measured. The sizes of Fe-containing nanoparticles are of 3–12 nm: chemical composition includes iron and iron carbide. It was shown that the powder is a superparamagnetic material. The stable ferrofluid, based on synthesised magnetic nanoparticles on a carbon matrix in water with nonoxynol-9 as surfactant, has been manufactured. The value of saturation magnetization on the level of 30 KA/m has been obtained.
机译:本研究旨在阐述用于铁磁流体应用的磁性纳米粒子的新制造技术。 低压电弧放电中的复合Fe-C阳极溅射已用于在碳基质上生产含Fe的纳米颗粒。 已经测量了含有纳米颗粒的铁的化学成分和尺寸分布函数。 含Fe的纳米颗粒的尺寸为3-12nm:化学组合物包括铁和碳化铁。 结果表明,粉末是超顺磁性材料。 制造了基于合成的磁性纳米颗粒的稳定的铁磁流体,其制造了非氧基-9作为表面活性剂的碳基质上。 获得了30kA / m水平的饱和磁化的值。

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