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Synthesis of size-controlled fcc and fct FePt nanoparticles

机译:尺寸受控的fcc和fct FePt纳米粒子的合成

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We report the synthesis of FePt magnetic nanoparticles using Na2Fe(CO)(4) and Pt(acac)(2) as reagents. This method allows good control over particle stoichiometry and ensures efficient mixing of Fe and Pt atoms in the alloy at the atomic scale. The use of a variety of different high boiling solvents and different surfactants allows control over particle size. Materials can be prepared in the disordered face-centered cubic (fcc) structural form and converted to the high magnetocrystalline anisotropy face centered tetragonal (fct or L1(0) structure) at lower temperatures than those prepared by other routes. By using solvents such as nonadecane, docosane, and tetracosane, we can prepare samples directly in the fct form. Preformed fcc particles prepared by this method can also be transformed in solution to the fct structure. Samples have been characterized by a combination of diffraction, electron microscopy, thermogravimetric, and magnetic measurements.
机译:我们报告使用Na2Fe(CO)(4)和Pt(acac)(2)作为试剂合成FePt磁性纳米粒子。这种方法可以很好地控制粒子的化学计量,并确保以原子级有效混合合金中的Fe和Pt原子。使用各种不同的高沸点溶剂和不同的表面活性剂可以控制粒度。可以将材料制成无序的面心立方(fcc)结构形式,并在比其他路线制备的温度更低的温度下将其转换为高磁晶各向异性的面心四角形(fct或L1(0)结构)。通过使用诸如十八烷,二十二烷和十四烷的溶剂,我们可以直接以fct形式制备样品。通过这种方法制备的预制的fcc颗粒也可以在溶液中转化为fct结构。样品通过衍射,电子显微镜,热重和磁测量相结合来表征。

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