首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Size Effects on Thermal Treatments and Room-Temperature Ferromagnetism in High-Vacuum Annealed ZnCoO Nanowires
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Size Effects on Thermal Treatments and Room-Temperature Ferromagnetism in High-Vacuum Annealed ZnCoO Nanowires

机译:尺寸对高真空退火ZnCoO纳米线热处理和室温铁磁性的影响

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摘要

Zn_(0.92)Co_(0.08)O nanowires with two different average diameters,19 and 38 nm,have been made by the vapor transport and Co ion implantation method.The as-implanted nanowires were thermally annealed through multiple steps in a high vacuum.The morphology and crystal structure of the nanowires were inspected by use of scanning and transmission electron microscopes.Electron microscopy analysis was used to ensure the absence of Co nanocrystals in the annealed nanowires.Measurements of temperature-dependent hysteresis were carried out to demonstrate a strong magnetic state in the high-vacuum annealed samples.The coercive field obeying a square-root temperature dependence and the room-temperature ferromagnetism have been discovered.Moreover,by comparison of magnetic properties between different-diameter nanowires,field-dependent magnetizations reveal considerably stronger ferromagnetism in the smaller diameter(19 nm)Zn_(0.92)Co_(0.08)O nanowires than that in the larger diameter(38 nm)nanowires.We argue that the generation of point defects by thermal annealing is the origin for the enhanced ferromagnetism in our high-vacuum annealed nanowires.
机译:通过气相传输和Co离子注入法制备了两种平均直径分别为19和38 nm的Zn_(0.92)Co_(0.08)O纳米线。将注入后的纳米线在高真空下通过多步热退火。使用扫描和透射电子显微镜检查纳米线的形态和晶体结构,使用电子显微镜分析以确保退火后的纳米线中不存在Co纳米晶体,并进行了温度依赖性磁滞的测量,以证明强磁性发现了服从平方根温度依赖性和室温铁磁性的矫顽场。此外,通过比较不同直径的纳米线之间的磁性,场依赖性磁化强度显着增强。直径较小(19 nm)的Zn_(0.92)Co_(0.08)O纳米线比直径较大(38 nm)的纳米线我们认为,通过热退火产生的点缺陷是高真空退火纳米线中增强铁磁性的根源。

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