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INFLUENCE OF MAGNETIC FIELD ON DEALLOYING OF Al-15Fe RIBBONS AND FORMATION OF Fe_3O_4 OCTAHEDRA

机译:磁场对Al-15Fe核的脱合金和Fe_3O_4八面体形成的影响

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The dealloying behavior of Al-15Fe (at.%) ribbons in a 5 mol·L~(-1) NaOH solution under static magnetic field has been investigated. The as-dealloyed samples were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX) analysis. The results reveal that Al atoms can be leached out from the α-Al(Fe) and Al_(13)Fe_4 phases in NaOH solutions with magnetic field, and the magnetic field can significantly reduce the particle size of the as-dealloyed samples comparing with those from non-treatment dealloying (1093 ± 202 nm). The average edge lengths of these octahedra are 303 ± 67 nm (under 0.25 T), 380 ± 141 nm (0.5 T), 421 ± 187 nm (0.75 T), respectively, implying that an optimized selection of magnetic intensity is helpful to obtain refined Fe_3O_4 particles. In addition, the particle morphology is obviously influenced by magnetic field and the effects were also systematically discussed.
机译:研究了Al-15Fe(at。%)碳带在5mol·L〜(-1)NaOH溶液中在静态磁场下的脱合金行为。脱合金后的样品通过X射线衍射(XRD),扫描电子显微镜(SEM)和能量色散X射线光谱(EDX)分析进行表征。结果表明,在具有磁场的NaOH溶液中,Al原子可以从α-Al(Fe)和Al_(13)Fe_4相中浸出,并且磁场可以显着减小脱合金样品的粒径。来自非处理脱合金(1093±202 nm)的样品。这些八面体的平均边长分别为303±67 nm(在0.25 T以下),380±141 nm(0.5 T),421±187 nm(0.75 T),这意味着优化的磁强度选择有助于获得精制的Fe_3O_4颗粒。另外,粒子的形貌明显受磁场影响,并对其影响进行了系统的讨论。

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