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High-aspect-ratio iron nanowires: magnetic field-assisted in situ reduction synthesis and extensive parametric study

机译:高纵横比铁纳米线:磁场辅助原位减少合成和广泛的参数研究

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High-performance iron nanowires have attracted wide attention from researchers due to their 'controllable' arrangement distribution by magnetic fields. In this paper, a simple magnetic field assisted in situ reduction method was proposed to synthesize Fe NWs with high aspect ratio, small-diameter, and good dispersion. A detailed parametric study determining the relationship among the final morphologies of the products and magnetic field, injection sequence of sodium borohydride that was injected into ferrous sulfate heptahydrate, reactant concentration, and injection rate is presented. The as-synthesized Fe NWs were analyzed by scanning electron microscopy, transmission electron microscopy, x-ray diffraction, x-ray photoelectron spectroscopy and vibrating sample magnetometry. A plausible mechanism for the formation of high-aspect-ratio Fe NWs is proposed. The SEM images showed the dependence of the NWs morphology and aspect ratio on synthesis parameters. Magnetic field and injection sequence showed considerable influences on the synthesis of high-aspect-ratio Fe NWs. In the absence of magnetic field or with the changes in injection sequence, only the Fe flakes were obtained. The NWs diameter decreased, and the aspect ratio increased with the increase in injection rate. The FeSO(4)7H(2)O and NaBH4 concentration considerably influenced the aspect ratio of the product, which increased first, decreased, and then increased again with the increase in FeSO(4)7H(2)O concentration. Meanwhile, the product aspect ratio increased and then became saturated with the increase in NaBH4 concentration Thus, an optimum synthesis process was obtained, with the average aspect ratio of 350, and the average diameter of 60 nm. The results reported in this paper provide a basis for optimizing the growth of Fe NWs by magnetic field-assisted method.
机译:高性能铁纳米线已经引起研究者的广泛关注,由于受磁场的“可控”的安排分配。在本文中,在原位还原方法辅助简单磁场被建议将合成的Fe纳米线具有高纵横比,小直径和良好的分散性。详细的参数研究确定产品和磁场的最终形态之间的关系,硼氢化钠的注射序列注入硫酸亚铁七水合物,反应物浓度,和喷射速率被呈现。所合成的Fe纳米线,通过扫描电子显微镜,透射电子显微镜,X射线衍射,X射线光电子能谱法和振动样品磁强计进行分析。提出了一种用于高纵横比的Fe纳米线的形成的一种可能的机制。 SEM图像显示出对合成参数的纳米线的形态和纵横比的依赖性。磁场和喷射序列显示出对高纵横比的Fe纳米线的合成相当大的影响。在不存在磁场的或与喷射序列的变化,只能得到Fe的薄片。 NWS的直径减小,并且纵横比在喷射率的增加而增加。所述的FeSO(4)7H(2)O和NaBH 4浓度显着地影响了产品,其第一增加,减少,然后用在硫酸亚铁(4)7H(2)O浓度的增加再次增加的纵横比。同时,产品长宽比增大后成为与增加浓度的NaBH 4饱和。因此,获得最佳的合成过程中,以350的平均纵横比,并为60nm的平均直径。结果在本文中报道了通过磁场辅助方法优化的Fe纳米线的生长提供了基础。

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