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Hydrothermal synthesis of ultrafine barium hexaferrite nanoparticles and the preparation of their stable suspensions

机译:超细六价铁酸钡纳米粒子的水热合成及其稳定悬浮液的制备

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摘要

The hydrothermal treatment of an appropriate suspension of Ba and Fe hydroxides in the presence of a large excess of OH— results in the formation of Ba hexaferrite at temperatures as low as 150 °C. This low formation temperature enables the synthesis of uniform, ultrafine Ba hexaferrite nanoparticles. These nanoparticles have a disc-like shape, approximately 10 nm wide, but only approximately 3 nm thick. When the temperature of the hydrothermal treatment is increased, large platelet Ba hexaferrite crystals appear as a consequence of secondary re-crystallization (Ostwald ripening). In this work, this undesired process of secondary re-crystallization has been evaluated. We show that the secondary re-crystallization can be totally suppressed with the use of an oleic acid surfactant. The addition of oleic acid enabled the synthesis of uniform, ultrafine nanoparticles at temperatures up to 240 °C. The nanoparticles were hydrophobic and could be suspended in nonpolar liquids to form relatively concentrated ferrofluids. Such stable suspensions of hexaferrite nanoparticles will be technologically important, especially as precursors for the preparation of new nanostructured materials, for example nanocomposites or nanostructured ceramic films.
机译:在大量过量的OH-存在下对适当的Ba和Fe氢氧化物悬浮液进行水热处理,导致在低至150°C的温度下形成六方铁酸钡。如此低的形成温度使得能够合成均匀的超细Ba六方铁氧体纳米粒子。这些纳米颗粒具有盘状形状,约10nm宽,但仅约3nm厚。当水热处理的温度升高时,由于二次重结晶(奥斯特瓦尔德熟化)而出现大片状的Ba六方铁氧体晶体。在这项工作中,已经评估了这种不希望的二次重结晶过程。我们表明,使用油酸表面活性剂可以完全抑制二次重结晶。添加油酸可在高达240°C的温度下合成均匀的超细纳米颗粒。纳米颗粒是疏水的,可以悬浮在非极性液体中以形成相对浓缩的铁磁流体。六价铁氧体纳米颗粒的这种稳定悬浮液在技术上将是重要的,尤其是作为制备新的纳米结构材料(例如纳米复合材料或纳米结构陶瓷膜)的前体。

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