标题: | 利用磁力探针显微镜测量氧化锌参杂钴奈米线的磁力性质 Magnetic property of Zn1-xCoxO nanowire by using Magnetic Force Microscopy |
作者: | 廖泰庆 T.C.Laio 简纹滨 W.B.Jain 电子物理系所 |
关键字: | 磁力探针显微镜;奈米线;氧化锌参杂钴;稀磁性半导体;DMS;MFM;Zn1-xCoxO;nanowire |
公开日期: | 2006 |
摘要: | 本实验利用磁力探针显微镜观察氧化锌参杂钴奈米线的磁力性质,相对于超导量子干涉仪只能测量材料的整体性质,磁力探针显微镜具有测量单根奈米线的特性。我们利用硬碟碟片的测试示范了仪器参数的选取对于磁力影像的影响,并界定出扫描奈米线所适合的参数。我们利用离子布植方法把不同浓度的钴试片打入氧化锌奈米线之中。得到了Zn0.98Co0.02O,Zn0.95Co0.05O,Zn0.91Co0.09O,Zn0.87Co0.13O等等不同参杂浓度的奈米线材料。并选取布植能量为40kev以及钴参杂浓度为12.8%的氧化锌奈米线作为测量的样品。为了提高奈米线的铁磁性,我们将奈米线在气压为4×10-5的环境以873k的温度作六个小时的退火处理。这使得奈米线内的氧空缺增加并进一步的提高奈米线的铁磁性性质。 我们利用磁力探针显微镜观察到氧化锌参杂钴奈米线具有室温铁磁性质,并从磁力影像中得知大部分的易轴方向垂直于奈米线成长方向。并也发现在某些奈米线中具有多个磁区的分布。我们也统计了不同直径的奈米线并发现并不完全符合预期的尺寸效应,这是由于经由激发光萤光机制测量不同直径的奈米线可以发现奈米线内部的缺陷和奈米线的直径成反比,由于氧空缺的增加使得奈米线的铁磁性变强,因此奈米线的磁力并不会和直径的两次方成正比。 We use Magnetic Force Microscopy to observe magnetic property of Zn1-xCoxO nanowires. Compare with SQUID,Magnetic Force Microscopy can measure individual nanowires. We measure the hard disk for the example of the relation between work-parameter and magnetic image, and we confirm the fit parameter for scanning nanowire. We implant different concentration of Cobalt into ZnO nanowires by ion implanting. We can get the Zn1-xCoxO nanowire for different concentration of cobalt as Zn0.98Co0.02O, Zn0.95Co0.05O, Zn0.91Co0.09O , Zn0.87Co0.13O nanowires. We select Zn0.87Co0.13O nanowires which has implanted by 40kev.because we want to increase the ferromagnetism of nanowires, we annealed nanowires at 873k in vacuum 4×10-5pa for 6h.It can increase numbers of oxygen vacancy to increase the ferromagnetism of Zn0.87Co0.13O nanowires. We have observed the room-temperature ferromagnetism of individual Zn1-xCoxO nanowires by Magnetic Force Microscopy. Most of our phase images revealed both dark and bright domains along the edges of the shorter nanowires, implicating that the magnetization is perpendicular to the growth direction of shorter nanowire . we also have observed multi-domain on the nanowires. The statistical result of the phase difference presents the roughly linear dependence on the nanowire diameter. It’s not conform to the size effect because of the oxygen vacancy. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009421540 http://hdl.handle.net/11536/81265 |
显示于类别: | Thesis |
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