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Preparation and Magnetic Properties of Nickel Nanowires by Magnetic Field-Induction

机译:磁场诱导镍纳米线的制备和磁性

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Nickel nanowires were successfully prepared on a large scale at room temperature through a simple and low cost liquid reduction method with the application of an external magnetic field of 0.3 T. The effect of uniform magnetic field on the morphology and properties of magnetic nickel was studied. The morphology, crystal structure, and static magnetic properties were measured by SEM, XRD, VSM, respectively. The results show that the sizes of the nickel nanowires as-prepared are about 100 nm in diameter, and several microns in length were obtained and they are mainly composed by fcc structure. The saturation magnetization of the nickel nanowires is 36 emu/g, less than that of bulk nickel crystal, and the coercivity of them is 186 emu/g, larger than that of bulk crystal with the mole ratio of sodium borohydride to nickel sulfate is 1:1000. This kind of nanowires array has potential applications with the special one-dimensional structures.
机译:通过简单且低成本的液体还原方法在室温下在大规模上成功地制备镍纳米线,通过简单而低成本的液体还原方法,施加0.3吨的外部磁场。研究了均匀磁场对磁镍形态和性质的影响。通过SEM,XRD,VSM测量形态,晶体结构和静态磁性。结果表明,制备的镍纳米线的尺寸为约100nm的直径约为100nm,得到几微米的长度,它们主要由FCC结构组成。镍纳米线的饱和磁化为36兆克,小于块状镍晶体,它们的矫顽力为186兆/克,大于硼氢化钠与硫酸镍的摩尔比的散装晶体的渗透率为1 :1000。这种纳米线阵列具有具有特殊一维结构的潜在应用。

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