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Synthesis and characterization of nanocrystalline iron aluminide particles

机译:纳米晶铝化铁颗粒的合成与表征

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In this work, we report the synthesis of intermetallic FeAl nanopartides using the laser vaporization controlled condensation technique. Nanopartides of iron aluminides are expected to enhance the room temperature ductility and the high temperature strength of these materials. The nanoparticles have an average particle diameter between 6 and 9 nm. Measurements of the d-spacing from X-ray (XRD) and electron diffraction studies confirm that the nanopartides have the same crystal structure (B2) as the bulk FeAl. High-resolution TEM reveals that the nanoparticles consist of a crystalline core encased within a approx 1nm amorphous layer formed upon the exposure of the particles to air. XPS results indicate that the nanoparticles have an Al-rich surface composi-tion, which supports the assumption that the surface coating is Al oxide. The FeAl oxide nanoparticles prepared in the presence of O_2 have the hercynite FeAl_2O_4 composition and exhibit a different XRD pattern from that of the surface-oxidized FeAl nanoparticles. The current results demonstrate that, by controlling the experimental conditions, it is possible to prepare a variety of intermetallic nanoparticles with selected size, morphology and composition. These particles can serve as the building blocks for advanced, high performance materials for several industrial and technological applications.
机译:在这项工作中,我们报告了使用激光汽化控制缩合技术合成金属间FeAl纳米粒子。铁铝化物的纳米粒子有望增强这些材料的室温延展性和高温强度。纳米颗粒的平均粒径在6至9nm之间。 X射线(XRD)的d间距测量和电子衍射研究证实,纳米颗粒具有与块状FeAl相同的晶体结构(B2)。高分辨率TEM显示,纳米颗粒由包裹在约1nm非晶层中的结晶核组成,该非晶层是在颗粒暴露于空气时形成的。 XPS结果表明,纳米颗粒具有富含Al的表面成分,这支持了表面涂层为Al氧化物的假设。在O_2存在下制备的FeAl氧化物纳米粒子具有水银矿FeAl_2O_4组成,并且呈现出与表面氧化FeAl纳米粒子不同的XRD图谱。目前的结果表明,通过控制实验条件,可以制备具有选定尺寸,形态和组成的多种金属间纳米颗粒。这些颗粒可以用作一些工业和技术应用中高级,高性能材料的基础。

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