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Ferromagnetic Nanomaterials Obtained by Thermal Decomposition of Ferrocene

机译:二茂铁热分解获得的铁磁纳米材料

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Ferromagnetic micro and nano particles that are chemically resistant have been obtained by thermal decomposition of ferrocenes in a tightly closed chamber at high pressures. The investigation is focused on the influence of decomposition temperature, work atmosphere, temperature-change rate and process duration. According to the conditions, Fe_3C, Fe_3O_4 and pure α-Fe particles have been created. Their composition and structure have been studied by Mossbauer spectroscopy, Scanning and Transmission Electron Microscopy, Electron Probe X-ray Micro Analysis and Energy Dispersive X-ray Spectrometry. In a tightly closed chamber, all components obtained during the decomposition process remain there. This difference to the widely-used Chemical Vapor Deposition method is very important. It inhibits the decomposition process and growth of ordered structures, preventing the end materials to be separated from each other. During the process, iron is liberated from the ferrocene molecule. Experiments have shown that it is highly chemically active to carbon and oxygen. For example, creation of carbide occured in conditions that are not allowed according to the iron-carbon phase diagram valid for bulk iron. Parallel to the reaction of iron with carbon (according to work atmosphere), the surplus of carbon atoms causes emerging of carbon nanoparticles.
机译:通过在密闭的密闭室中在高压下对二茂铁进行热分解,获得了具有化学抗性的铁磁微米和纳米颗粒。研究集中在分解温度,工作气氛,温度变化率和过程持续时间的影响上。根据条件,生成了Fe_3C,Fe_3O_4和纯α-Fe颗粒。它们的组成和结构已通过Mossbauer光谱,扫描和透射电子显微镜,电子探针X射线显微分析和能量色散X射线光谱进行了研究。在密闭的腔室中,分解过程中获得的所有成分都保留在那里。这种与广泛使用的化学气相沉积法的区别非常重要。它抑制了分解过程和有序结构的生长,从而防止了末端材料彼此分离。在此过程中,铁从二茂铁分子中释放出来。实验表明,它对碳和氧具有很高的化学活性。例如,碳化物的产生发生在根据对散装铁有效的铁碳相图所不允许的条件下。与铁与碳的反应平行(根据工作气氛),过量的碳原子会导致碳纳米颗粒的出现。

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