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Size-Control and Size-Selection at the Nanosize Level: Production of CoFe_2O_4 Nanoparticles of Unusual High Coercivity at Room Temperature

机译:纳米尺寸水平的尺寸控制和尺寸选择:在室温下产生CoFe_2O_4纳米粒子的异常高矫顽力

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Among the various ferrite materials, cobalt ferrite (CoFe_2O_4) is well known to possess excellent chemical stability and good mechanical hardness. Furthermore, the large positive first order crystalline anisotropy constant has made this ferrite a promising candidate for magneto-optical recording media. However, applications of CoFe_2O_4 are often limited due to the lack of a synthesis technique capable to achieve a suitable control over particle size distribution, with particle diameters between the superparamagnetic and single domain sizes range. This control would permit to attain high coercivity and moderate magnetization at room temperature, which is critical for application of this material in actual devices. Here, we introduce a solution chemistry technique that involves a 'seeding step' followed by a size-selective particles separation that permits a fine size classification of single domain CoFe_2O_4 nanoparticles. The size-selected 40-nm particles reported room temperature coercivity as high as 4.6 kOe and a squareness ratio of 0.66.
机译:在各种铁氧体材料中,众所周知,钴铁氧体(CoFe_2O_4)具有优异的化学稳定性和良好的机械硬度。此外,大的正面晶体各向异性恒定使该铁氧体成为磁光记录介质的有希望的候选者。然而,CoFe_2O_4的应用通常是由于能够实现对粒度分布的合适控制的合成技术而受到限制的,粒径在超顺磁性和单结构域尺寸范围之间。该控制将允许在室温下达到高矫顽力和中等磁化,这对于在实际装置中施加这种材料至关重要。这里,我们介绍一种溶液化学技术,其涉及“播种步骤”,其次是尺寸选择性颗粒分离,其允许单结构域COFE_2O_4纳米颗粒的细尺寸分类。所选择的尺寸40nm颗粒报告的室温矫顽力高达4.6只koe和平方率为0.66。

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