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Ultrathin ZnO nanorods: facile synthesis, characterization and optical properties

机译:ZnO超薄纳米棒:易于合成,表征和光学性质

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摘要

We first took advantage of a modified solvothermal route to achieve deliberate size modulation of ZnO nanorods. In this facile wet chemical process, the crystal sizes are sensitive to the surfactant concentrations, due to the efficient selecting adsorption of surfactant on the ZnO crystal planes. As a result, a fine size tuning of ZnO nanorods ( from about 6.5 nm to about 120 nm) with high quality is conveniently achieved. The as-prepared ultrathin ZnO nanorods were investigated using scanning electron microscopy (SEM), transmission electron microscopy (TEM) and x-ray diffraction. Optical properties of the ultrathin ZnO nanorods were also studied; the strong UV excitonic emission and weak deep-level emission reveal their very limited structural defects and narrow size distribution, which is interesting and important for facilitating their special applications for photoelectric nanodevices in modern science and technology.
机译:我们首先利用改进的溶剂热途径来实现ZnO纳米棒的故意尺寸调节。在这种简便的湿化学工艺中,由于有效选择表面活性剂在ZnO晶面上的吸附,晶体尺寸对表面活性剂浓度敏感。结果,方便地实现了高质量的ZnO纳米棒的精细尺寸调节(从约6.5nm至约120nm)。使用扫描电子显微镜(SEM),透射电子显微镜(TEM)和X射线衍射研究了制备的超薄ZnO纳米棒。还研究了超薄ZnO纳米棒的光学性质。强烈的紫外线激子发射和弱的深能级发射显示出它们非常有限的结构缺陷和狭窄的尺寸分布,这对于促进其在现代科学技术中对光电纳米器件的特殊应用非常重要。

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