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Plasma dynamic synthesis and obtaining ultrafine powders of iron oxides with high content of ε-Fe_2O_3

机译:等离子体动态合成并获得高含量ε-Fe_2O_3的氧化铁超细粉末

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摘要

The ultrafine iron oxide powders were successfully synthesized using the plasma dynamic synthesis method, based on the use of a coaxial magnetoplasma accelerator with the iron electrode system. The synthesis was implemented in the high-speed iron-containing plasma jet, flowing into the space of the sealed chamber, filled with the gaseous mixture of oxygen and argon at different ratios. The XRD investigations showed that the synthesized products were heterophase and consisted of three main phases such as magnetite Fe_3O_4, hematite α-Fe_2O_3 and ε-Fe_2O_3. The SEM data confirmed the presence of three particle types: the hollow spheroids with sizes about hundreds of micrometers (magnetite), the particles with sizes up to 100 μm from the porous material of sintered submicron particles (hematite), and na-noscale particles (ε-phase). We found that at the higher oxygen concentration the content of ε-Fe_2O_3 is increased up to ~ 50% at the same time with decreasing the Fe_3O_4 phase. The magnetic properties of the products are mainly determined by magnetite characteristics and are significantly reduced with decreasing its content in the powder. In order to investigate the synthesized ε-Fe_2O_3 on the ability to absorb the electromagnetic radiation in the millimeter wavelength range, we separated the product with the higher e-phase concentration. The fraction mainly, consisting of ε-Fe_2O_3, showed the occurrence of the natural resonance at frequencies of 8.3 GHz and 130 GHz.
机译:在将同轴磁等离子体加速器与铁电极系统配合使用的基础上,采用等离子体动态合成方法成功合成了超细氧化铁粉末。合成是在高速的含铁等离子体射流中进行的,该射流流入密封室的空间,并以不同比例的氧气和氩气气态混合物填充。 XRD研究表明,合成产物为异相,由磁铁矿Fe_3O_4,赤铁矿α-Fe_2O_3和ε-Fe_2O_3三个主要相组成。 SEM数据证实了三种颗粒类型的存在:尺寸约为数百微米的空心球体(磁铁矿),来自亚微米级烧结颗粒(赤铁矿)的多孔材料的尺寸最大为100μm的颗粒以及纳米级颗粒( ε相)。我们发现,在较高的氧浓度下,ε-Fe_2O_3的含量会随着Fe_3O_4相的减少而增加至约50%。产品的磁性能主要取决于磁铁矿的特性,并且随着粉末含量的降低而显着降低。为了研究合成的ε-Fe_2O_3在毫米波长范围内吸收电磁辐射的能力,我们分离了具有较高e相浓度的产物。该部分主要由ε-Fe_2O_3组成,在8.3 GHz和130 GHz频率下显示出自然共振。

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