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Effects of Cu diffusion-doping on structural, optical and magnetic properties of ZnO nanorod arrays grown by VPT

机译:铜扩散掺杂对VPT生长ZnO纳米棒阵列结构,光学和磁性的影响

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摘要

Well-aligned ZnO nanorods were prepared by the vapor phase transport method on Si covered with a ZnO buffer layer. After the nanostructure growth, Cu was doped into the ZnO nanorods by diffusion at three different temperatures and for different times. Undoped and Cu diffusion-doped ZnO samples are highly textured, with the c axis of the wurtzite structure along the growth direction. The incorporation of Cu caused some slight changes in the nanorod alignment, although the wurtzite crystal structure was maintained. X-ray photoelectron spectroscopy measurements revealed that Cu ions were in a divalent state and substituted for the Zn2+ ions of the ZnO matrix. Photoluminescence results at 10 K indicate that the incorporation of copper leads to a relative increase of Cu-related structured green band deep level intensity. Magnetic measurements revealed that both undoped and Cu diffusion-doped ZnO samples exhibited room temperature ferromagnetism. It was also found that bound magnetic polarons play an important role in the appearance of room temperature ferromagnetism in Cu diffusion-doped ZnO nanorods.
机译:通过气相传输法在覆盖有ZnO缓冲层的Si上制备了取向良好的ZnO纳米棒。在纳米结构生长之后,通过在三个不同的温度和不同的时间扩散将Cu掺杂到ZnO纳米棒中。未掺杂和Cu扩散掺杂的ZnO样品具有很高的织构,纤锌矿结构的c轴沿生长方向。尽管纤锌矿晶体结构得以保持,但铜的掺入在纳米棒排列中引起了一些细微变化。 X射线光电子能谱测量表明,铜离子处于二价状态,并取代了ZnO基质中的Zn2 +离子。在10 K处的光致发光结果表明,铜的引入导致Cu相关的结构化绿色带深能级强度的相对增加。磁性测量表明,未掺杂和掺杂Cu的ZnO样品均表现出室温铁磁性。还发现,在Cu扩散掺杂的ZnO纳米棒中,结合的磁极化子在室温铁磁性的出现中起重要作用。

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