Strelchuk V, Kolomys O, Rarata S, Lytvyn P, Khyzhun O, Chey Chan Oeurn, Nur Omer, Willander Magnus
V.E. Lashkaryov Institute of Semiconductor Physics, National Academy of Sciences of Ukraine, 45 Nauky pr., 03028, Kyiv, Ukraine.
Department of Physics, Kyiv National Taras Shevchenko University, 64 Volodymyrs'ka str., 01601, Kyiv, Ukraine.
Nanoscale Res Lett. 2017 Dec;12(1):351. doi: 10.1186/s11671-017-2127-4. Epub 2017 May 12.
ZnO nanorods (NRs) arrays doped with a large concentration of Mn synthesized by aqueous chemical growth and were characterized by SEM, photoluminescence, Raman scattering, magnetic force microscopy (MFM). By comparison of spectra taken on pure and Mn-doped ZnO NRs, a few new Raman impurity-related phonon modes, resulting from the presence of Mn in the investigated samples. We also present a vibrational and magnetic characterization of individual lying nanorods using Raman and MFM imaging. Confocal scanning micro-Raman mapping of the spatial distribution of intensity and frequency of phonon modes in single Mn-doped ZnO NRs nanorods is presented and analyzed for the first time. Mn-related local vibrational modes are also registered in Raman spectra of the single nanorod, confirming the incorporation of Mn into the ZnO host matrix. At higher Mn concentration the structural transformation toward the spinel phase ZnMnO and Mn3O4 is observed mainly in 2D bottom layers. MFM images of Mn-doped ZnO NR arrays and single nanorod were studied in nanoscale at room temperature and demonstrate magnetic behavior. The circular domain magnetic pattern on top of single nanorod originated to superposition of some separate domains inside rod. This demonstrates that long-range ferromagnetic order is present at room temperature. Aligned Mn-doped ZnO NRs demonstrates that long-range ferromagnetic order and may be applied to future spintronic applications.
通过水热化学生长法合成了高浓度锰掺杂的氧化锌纳米棒(NRs)阵列,并采用扫描电子显微镜(SEM)、光致发光、拉曼散射、磁力显微镜(MFM)对其进行了表征。通过比较纯氧化锌纳米棒和锰掺杂氧化锌纳米棒的光谱,发现了一些与拉曼杂质相关的新声子模式,这是由所研究样品中锰的存在导致的。我们还利用拉曼和MFM成像对单个平躺纳米棒进行了振动和磁性表征。首次展示并分析了单根锰掺杂氧化锌纳米棒中声子模式强度和频率空间分布的共聚焦扫描显微拉曼映射。在单根纳米棒的拉曼光谱中也记录到了与锰相关的局域振动模式,证实了锰已掺入氧化锌主体基质中。在较高的锰浓度下,主要在二维底层观察到向尖晶石相ZnMnO和Mn3O4的结构转变。在室温下对锰掺杂氧化锌纳米棒阵列和单根纳米棒的MFM图像进行了纳米尺度研究,并展示了其磁行为。单根纳米棒顶部的圆形畴磁图案源于棒内一些独立畴的叠加。这表明在室温下存在长程铁磁序。排列整齐的锰掺杂氧化锌纳米棒显示出长程铁磁序,可应用于未来的自旋电子学应用。