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Magnetic Properties of Co-B Nanostructures Prepared Via Electroless Deposition

机译:通过无电沉积制备的CO-B纳米结构的磁性性能

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We have investigated the magnetic properties of nanostructured Co-B alloys, prepared via electroless deposition. The deposition process results in the formation of a nanostructure consisting of nanotubes connected to thin films at both ends. Depending on the deposition time end-open or end-closed nanotubes can be formed. The overall nanostructure of Co-B deposit has a specific magnetization of 65.6 ± 8 JT~(-1)Kg~(-1) (0.75 ± 0.09 μB per Co atom). We investigated the anisotropy and coercivity of the nanostructure by carrying out magnetic measurements with and without the top and base films. Magnetic anisotropy is observed in nanostructures with thin films, while nanotubes with the film removed do not display any significant anisotropy. Minimum coercivities of 550 ± 10 A/m and 4540 ± 40 A/m were recorded parallel and perpendicular to the nanotube axis with an associated film present. The coercivity values increased to 8750 ± 50 A/m and 7160 ± 50 A/m parallel and perpendicular to the nanotube axis, when the film was removed.
机译:我们研究了通过无电沉积制备的纳米结构CO-B合金的磁性。沉积过程导致形成由连接到两端的薄膜的纳米管组成的纳米结构。根据沉积时间,可以形成末端开口或终闭纳米管。 Co-B沉积的总纳米结构具有65.6±8JT〜(-1)kg〜(-1)的特定磁化强度(每Co原子0.75±0.09μB)。我们通过使用顶部和基膜进行磁测量来研究纳米结构的各向异性和矫顽力。在具有薄膜的纳米结构中观察到磁各向异性,而薄膜除去的纳米管不显示任何显着的各向异性。 550±10a / m和4540±40a / m的最小凝固性并平行地记录并垂直于存在相关的薄膜垂直于纳米管轴。当除去薄膜时,矫顽力值增加到8750±50a / m和7160±50a / m,并垂直于纳米管轴。

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