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首页> 外文期刊>European journal of inorganic chemistry >The fabrication and magnetic properties of Ni fibers synthesized under external magnetic fields
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The fabrication and magnetic properties of Ni fibers synthesized under external magnetic fields

机译:外部磁场作用下合成的镍纤维的制备及磁性

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摘要

One-dimensional (1D) nanocrystallites Ni fibers with different lengths were fabricated by the reduction of Ni2+ ions by hydrazine hydrate in the presence of external magnetic fields. The effect of the reaction conditions and magnetic field intensity on the microstructures and magnetic properties of the Ni fibers were systematically investigated by scanning electron microscopy (SEM), X-ray diffraction (XRD), and measurement of hysteresis loops at room temperature. It was found that both the intensity of the external magnetic field and the concentration of the nickel salt solution played key roles in governing the microstructures and magnetic properties of the Ni fibers. Namely, the mean length of the Ni fibers increased markedly with increasing Ni2+ ion concentration and intensity of the external magnetic field as well. Moreover, the Ni fiber samples prepared under external magnetic fields had higher squareness and coercivity values than those synthesized in the absence of the external magnetic field. Therefore, a relatively high intensity of the external magnetic field and concentration of the Ni2+ ions was selected for the preparation of the desired Ni fibers with improved microstructures and magnetic properties. The present approach has the advantages of having a fast reaction rate and low cost and might be promising for the effective control of the shape and magnetic properties of magnetic materials and for large-scale production as well. The resulting Ni fibers might be potential catalysts, magnetic storage materials, and conductive fillers for shielding of electromagnetic interference (EMI). ((C) Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2008).
机译:通过在外部磁场存在下通过水合肼还原Ni2 +离子来制备具有不同长度的一维(1D)纳米纤维。通过扫描电子显微镜(SEM),X射线衍射(XRD)和室温下的磁滞回线测量,系统地研究了反应条件和磁场强度对Ni纤维的微观结构和磁性能的影响。发现外部磁场的强度和镍盐溶液的浓度在控制镍纤维的微观结构和磁性方面都起着关键作用。即,Ni纤维的平均长度随着Ni 2+离子浓度和外部磁场强度的增加而显着增加。而且,与在没有外部磁场的情况下合成的Ni纤维样品相比,在外部磁场下制备的Ni纤维样品具有更高的矩形度和矫顽力值。因此,选择了相对较高的外部磁场强度和Ni2 +离子浓度来制备具有改善的微观结构和磁性的所需Ni纤维。本发明的方法具有反应速度快和成本低的优点,并且对于有效控制磁性材料的形状和磁性能以及大规模生产也是有希望的。所得的镍纤维可能是潜在的催化剂,磁性存储材料以及用于屏蔽电磁干扰(EMI)的导电填料。 ((C)Wiley-VCH Verlag GmbH&Co.KGaA,69451 Weinheim,Germany,2008)。

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