Chai Ke, Li Zi-An, Huang Wenting, Richter Gunther, Liu Ruibin, Zou Bingsuo, Caron Jan, Kovács András, Dunin-Borkowski Rafal E, Li Jianqi
Beijing Key Laboratory of Nano Photonics and Ultrafine Optoelectronic Systems, School of Physics, Beijing Institute of Technology, Beijing 100081, People's Republic of China.
Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.
J Chem Phys. 2020 Mar 21;152(11):114202. doi: 10.1063/1.5145337.
Investigating the local micromagnetic structure of ferromagnetic nanowires (NWs) at the nanoscale is essential to study the structure-property relationships and can facilitate the design of nanostructures for technology applications. Herein, we synthesized high-quality iron and cobalt NWs and investigated the magnetic properties of these NWs using off-axis electron holography. The Fe NWs are about 100 nm in width and a few micrometers in length with a preferential growth direction of [100], while the Co NWs have a higher aspect-ratio with preferential crystal growth along the [110] direction. It is noted that compact passivation surface layers of oxides protect these NWs from further oxidation, even after nearly two years of exposure to ambient conditions; furthermore, these NWs display homogeneous ferromagnetism along their axial direction revealing the domination of shape anisotropy on magnetic behavior. Importantly, the average value of magnetic induction strengths of Fe NWs (2.07 {±} 0.10 T) and Co NWs (1.83 {±} 0.15 T) is measured to be very close to the respective theoretical value, and it shows that the surface oxide layers do not affect the magnetic moments in NWs. Our results provide a useful synthesis approach for the fabrication of single-crystalline, defect-free metal NWs and give insight into the micromagnetic properties in ferromagnetic NWs based on the transmission electron microscopy measurements.
在纳米尺度上研究铁磁纳米线(NWs)的局部微磁结构对于研究结构-性能关系至关重要,并且有助于设计用于技术应用的纳米结构。在此,我们合成了高质量的铁和钴纳米线,并使用离轴电子全息术研究了这些纳米线的磁性。铁纳米线宽度约为100 nm,长度为几微米,优先生长方向为[100],而钴纳米线具有更高的纵横比,沿[110]方向优先晶体生长。值得注意的是,即使在暴露于环境条件近两年后,致密的氧化物钝化表面层也能保护这些纳米线免受进一步氧化;此外,这些纳米线沿其轴向显示出均匀的铁磁性,揭示了形状各向异性对磁行为的主导作用。重要的是,测得铁纳米线(2.07 {±} 0.10 T)和钴纳米线(1.83 {±} 0.15 T)的磁感应强度平均值非常接近各自的理论值,这表明表面氧化层不会影响纳米线中的磁矩。我们的结果为制备单晶、无缺陷的金属纳米线提供了一种有用的合成方法,并基于透射电子显微镜测量深入了解了铁磁纳米线的微磁性能。