首页> 外文期刊>Journal of Applied Physics >Monocrystalline hexagonal-close-packed and polycrystalline face-centered-cubic Co nanowire arrays fabricated by pulse dc electrodeposition
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Monocrystalline hexagonal-close-packed and polycrystalline face-centered-cubic Co nanowire arrays fabricated by pulse dc electrodeposition

机译:脉冲直流电沉积制备单晶六角密堆积多晶面心立方钴纳米线阵列

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Cobalt nanowire arrays have been grown onto anodic aluminum oxide templates by using a pulse dc electrodeposition technique. We demonstrate that the crystal structure, grain size, and related magnetic properties can be controlled by applying different pulse frequencies. For a pulse frequency of 25 Hz, monocrystalline hexagonal-close-packed Co nanowires are formed with a well defined [1010] growth axis along the wire length. At a higher pulse frequency of 1000 Hz, face-centered-cubic Co nanowires are deposited with a small grain size and a preferred [111] texture directed along the length of the wire. Possible mechanisms for the observed growth characterization are discussed. An investigation of the corresponding magnetic properties indicates that the fcc Co nanowire arrays have the larger coercivity and squareness values: reasons for this behavior are explored.
机译:通过使用脉冲直流电沉积技术,钴纳米线阵列已生长到阳极氧化铝模板上。我们证明,可以通过应用不同的脉冲频率来控制晶体结构,晶粒尺寸和相关的磁性能。对于25 Hz的脉冲频率,形成单晶六角密堆积Co纳米线,沿着线长具有明确定义的[1010]生长轴。在1000 Hz的较高脉冲频率下,以小晶粒尺寸和沿线的长度方向排列的[111]首选纹理沉积了面心立方Co纳米线。讨论了观察到的生长特征的可能机制。对相应磁性的研究表明,fcc Co纳米线阵列具有较大的矫顽力和矩形度值:探讨了这种行为的原因。

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