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Disorder-Order Transformation and Local Structure Changes of FePt Nanoparticles Synthesized by Polyol Process

机译:多元醇法合成FePt纳米粒子的无序转化和局部结构变化

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The ordering process of FePt nanoparticles synthesized in polyol solution at 383 K was investigated. Whereas X-ray diffraction peaks of the as-synthesized specimen corresponded to the fcc structure, the Fe-O correlation and Pt-O correlation peaks were observed in the radial structure functions of Fe and Pt atoms obtained by X-ray absorption spectroscopy. Thus, the as-synthesized specimen was composed of crystalline FePt alloy phase and poorly crystallized Fe- and Pt-oxide phase. In X-ray diffraction patterns of the specimens which were heat-treated at temperatures above 568 K in a mixture of 5%H$_{2}$ in Ar, diffraction peaks corresponding to superlattice lines were observed. Although the lattice constants of the as-synthesized specimen were much larger than that of the bulk fcc-FePt alloy with equiatomic composition, the lattice constants of the specimen heat-treated at 1173 K were very close to the bulk L1$_{0}$-FePt alloy. Additionally, in the radial structure function, peaks corresponding to the Fe-O and Pt-O correlations disappeared and peaks corresponding to Fe-Pt (or Fe) and Pt-Fe (Pt) correlations clearly appeared after heat treatment at temperatures above 568 K. Consequently, it is highly probable that the disorder-order transformation of FePt nanoparticles synthesized in polyol solution is accompanied by compositional homogenization due to the reduction of the poorly crystallized Fe- and Pt-oxide phase.
机译:研究了在383 K的多元醇溶液中合成的FePt纳米粒子的有序化过程。合成样品的X射线衍射峰与fcc结构相对应,而在X射线吸收光谱法获得的Fe和Pt原子的径向结构函数中观察到Fe-O相关峰和Pt-O相关峰。因此,合成后的样品由结晶的FePt合金相和结晶度差的Fe和Pt氧化物相组成。在568 K以上,在5%H的混合物中进行过热处理的样品的X射线衍射图中,<$ Formulatypetype =“ inline”> $ _ {2} $ inline“> $ _ {0} $ -FePt合金。另外,在径向结构函数中,在高于568 K的温度下进行热处理后,对应于Fe-O和Pt-O相关性的峰消失,并且对应于Fe-Pt(或Fe)和Pt-Fe(Pt)相关性的峰清晰出现。因此,由于结晶度差的Fe-和Pt-氧化物相的还原,在多元醇溶液中合成的FePt纳米颗粒的无序转化很可能伴随着成分均化。

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