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Crystalline ZnO/amorphous ZnO core/shell nanorods: self-organized growth, structure, and novel luminescence

机译:结晶ZnO /非晶ZnO核/壳纳米棒:自组织生长,结构和新颖的发光

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摘要

We have used pulsed-laser deposition, following a specific sequence of heating and cooling phases, to grow ZnO nanorods on ZnO buffer/Si (100) substrates, in a 600 mT oxygen ambient, without catalyst. In these conditions, the nanorods preferentially self-organize in the form of vertically aligned, core/shell structures. X-ray diffraction analyses, obtained from 2θ-ω and pole figure scans, shows a crystalline (wurtzite) ZnO deposit with uniform c-axis orientation normal to the substrate. Field emission SEM, TEM, HR-TEM and selective area electron diffraction (SAED) studies revealed that the nanorods have a crystalline core and an amorphous shell. The low-temperature (13 K) photoluminescence featured a strong I6 (3.36 eV) line emission, structured green band emission and a hitherto unreported broad emission at 3.331 eV. Further studies on the 3.331 eV band showed the involvement of deeply-bound excitonic constituents in a single electron-hole recombination. The body of structural data suggests that the 3.331 eV emission can be linked to the range of defects associated with the unique crystalline ZnO/amorphous ZnO core/shell structure of the nanorods. The relevance of the work is discussed in the context of the current production methods of core/shell nanorods and their domains of application.
机译:我们已经按照特定的加热和冷却阶段顺序使用了脉冲激光沉积,在没有催化剂的情况下,在600 mT的氧气环境中,在ZnO缓冲液/ Si(100)衬底上生长ZnO纳米棒。在这些条件下,纳米棒优先以垂直排列的核/壳结构形式自组织。从2θ-ω和极图扫描获得的X射线衍射分析显示,晶体(纤锌矿型)ZnO沉积物的法线方向垂直于基材。场发射SEM,TEM,HR-TEM和选择性区域电子衍射(SAED)研究表明,纳米棒具有结晶核和非晶壳。低温(13 K)光致发光的特点是强烈的I6(3.36 eV)线发射,结构化的绿色带发射以及迄今为止从未报告的3.331 eV宽发射。对3.331 eV谱带的进一步研究表明,深束缚的激子成分与单个电子-空穴复合有关。结构数据表明,3.331 eV发射可与与纳米棒独特的晶体ZnO /非晶ZnO核/壳结构相关的缺陷范围有关。在目前的核/壳纳米棒的生产方法及其应用领域的背景下讨论了这项工作的相关性。

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