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Electrochemical synthesis of core-shell Co-Ni nanorod arrays with facilely regulated magnetic properties

机译:芯壳CO-NI纳米座阵列的电化学合成,具有易于调节的磁性特性

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摘要

Ordered Co-Ni core-shell magnetic nanorod arrays were fabricated by a two-step electrodeposition into a self-assembled anodic alumina oxide template. The characterizations of the morphology and elemental distribution indicated the successful fabrication of similar to 260 nm Co core nanorods surrounded by similar to 20 nm concentric Ni shell. The magnetization measurement revealed that the synthesized Co-Ni core-shell nanorod arrays exhibited lower coercivity and higher remanence ratio than plain Co nanorod arrays, offering a possibility to regulate suitable coercivity at the nanoscale. It was also demonstrated combing tube and rod to form core-shell structure offered the perspective for engineering the magnetic properties without changing geometric parameters or with minimally altered crystalline structure.
机译:订购的CO-NI核 - 壳磁性纳米棒通过两步电沉积成自组装阳极氧化铝氧化物模板而制造。 形态学和元素分布的特征表明,与20nm同心Ni壳相似的260nm Co核心纳米棒的成功制造。 磁化测量表明,合成的CO-Ni核 - 壳纳米棒阵列表现出较低的矫顽力和比普通Co nanorod阵列更高的剩余比率,提供了调节纳米级的合适矫顽力的可能性。 还证明了梳理管和杆以形成核心壳结构,该结构提供了工程磁性的透视而不改变几何参数或以微小的结晶结构改变。

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