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Low temperature hydrothermal synthesis of octahedral Fe3O4 microcrystals

机译:低温水热法合成八面体Fe3O4微晶

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摘要

Octahedral Fe3O4 crystals in the size range of 200-300 nm have been prepared with a high yield at a low temperature of 90 degrees C using a simple polyethylene glycol (PEG)-mediated hydrothermal approach. It is found that both PEG molecules and NaOH content are crucial for the formation of Fe3O4 octahedrons because of the selective adsorption of PEG molecules on the ( 1 1 1) planes of Fe3O4 at higher NaOH concentrations, delaying the crystal growth along the [ 1 1 1] axis. The formation mechanisms related to Fe3O4 nuclei, octahedral crystals, and their linear self-assembly structures are discussed. Magnetization measurements show that the Fe3O4 octahedrons have a relatively high magnetic saturation value of 85.5 emu g(-1) and a coercive field of 118 Oe, which is ascribed to the high crystalline perfection and chain-like structures of the sample.
机译:使用简单的聚乙二醇(PEG)介导的水热方法,可以在90摄氏度的低温下以高收率制备尺寸范围为200-300 nm的八面体Fe3O4晶体。发现PEG分子和NaOH含量均对Fe3O4八面体的形成至关重要,因为在较高NaOH浓度下PEG分子在Fe3O4的(1 1 1)平面上选择性吸附,从而延缓了晶体沿[1 1 1]轴。讨论了与Fe3O4核,八面体晶体及其线性自组装结构有关的形成机理。磁化强度测量结果表明,Fe3O4八面体的磁饱和值较高,为85.5 emu g(-1),矫顽场为118 Oe,这归因于样品的高结晶度和链状结构。

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