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Synthesis of Y_3Fe_5O_(12) (YIG) assisted by high-energy ball milling

机译:高能球磨辅助合成Y_3Fe_5O_(12)(YIG)

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Yttrium iron garnet, Y_3Fe_5O_(12) (YIG) powders were synthesized by mechanochemical processing (MCP) from Fe_2O_3 and Y_2O_3, followed by an annealing. The aim of this work was to demonstrate that MCP followed by annealing at relative low temperatures can induce the formation of nanostructured YIG. The effect of synthesis process on the final magnetic properties was also studied. The precursors mixed in a stoichiometric ratio to obtain YIG were milled at room temperature in a shaker mixer mill with a ball:powder weight ratio of 10:1. In order to achieve a single-phase of nanostructured YIG a short thermal annealing at temperatures from 700 to 1100 °C was done. X-ray diffraction (XRD) and scanning electron microscopy (SEM) were used to characterize the synthesized powders. The milling process promotes the formation of a perovskite phase (orthoferrite YFeO_3) independent from the milling time;;garnet could only be obtained after an annealing process. The partial formation of the garnet phase was observed in mixtures milled for 5 h. In order to obtain a pure YIG, it is necessary to do a post-treatment of an annealing at temperatures of 900 °C, around 400 °C lower than those used to prepare the material by solid state reaction. Also, the effect of synthesis method into the magnetic behavior of the garnet was shown.
机译:钇铁石榴石Y_3Fe_5O_(12)(YIG)粉末是通过机械化学处理(MCP)由Fe_2O_3和Y_2O_3合成的,然后进行退火。这项工作的目的是证明MCP然后在相对较低的温度下退火可以诱导纳米YIG的形成。还研究了合成过程对最终磁性能的影响。以化学计量比混合以获得YIG的前体在室温下在振动混合机中以10:1的球:粉重量比研磨。为了获得单相的纳米结构YIG,在700至1100°C的温度下进行了短暂的热退火。 X射线衍射(XRD)和扫描电子显微镜(SEM)被用来表征合成的粉末。研磨过程促进了钙钛矿相(正铁氧体YFeO_3)的形成,而与研磨时间无关;石榴石只能在退火过程之后才能获得。在研磨5小时的混合物中观察到石榴石相的部分形成。为了获得纯的YIG,必须在900°C的温度下进行退火的后处理,该温度比用于通过固态反应制备材料的温度低约400°C。此外,还显示了合成方法对石榴石磁性能的影响。

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