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Synthesis and characteristics of iron nanoparticles in a carbon matrix along with the catalytic graphitization of amorphous carbon

机译:碳基体中铁纳米粒子的合成及特征以及无定形碳的催化石墨化

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摘要

Iron nanoparticles in a carbon matrix were synthesized by in situpyrolysis of maleic anhydride and ferrocene, using different molecular weight percentages. The characterization and magnetic properties of the carbon-iron system were investigated systematically. Transmission electron microscope (TEM) images showed that the as-prepared samples consist of nanometric dark grains (iron-rich phase) embedded in a light matrix (carbon-rich phase). X-ray diffraction and TEM selected area diffraction revealed catalytic graphitization and iron phases presentin the sample. The carbon-metal system shows a finite hysteresis loop even at room temperature indicating its ferromagnetic nature. The saturation magnetization equals the bulk iron carbide value at low temperature. The coercive force exhibits 1/d dependence at low temperature having a maximum H-C of 2 kOe for the lowest iron concentration sample.
机译:碳基体中的铁纳米颗粒是通过马来酸酐和二茂铁的分子筛裂解,使用不同的分子量百分比合成的。系统地研究了碳-铁体系的表征和磁性。透射电子显微镜(TEM)图像显示,所制备的样品由嵌入在轻质基质(富碳相)中的纳米暗颗粒(富铁相)组成。 X射线衍射和TEM选择区域衍射揭示了样品中存在催化石墨化和铁相。碳金属系统即使在室温下也显示出有限的磁滞回线,表明其铁磁性质。饱和磁化强度等于低温下的整体碳化铁值。对于最低的铁浓度样品,矫顽力在低温下具有1 / d依赖性,最大H-C为2 kOe。

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