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Development and Photoluminescence of ZnO-ZnS Core-Shell Nanotube and Nanorod Arrays

机译:ZnO-ZnS核心壳纳米管和纳米棒阵列的开发和光致发光

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After the wurtzite ZbS nanorods were synthesized by hydrothermal treatment in the presence of ethylenediamine (en) aqueous solutions at 200oC, ZnS-ZnO core-shell nanorods were readily obtained by annealing ZnS nanorods under oxygen at 650oC for 3-5 min. A strong broad peak in the 450-550 nm visible range was clearly detected and its peak intensity could be greatly enhanced after the ZnO shell was developed on hydrothermal ZnS nanorods. On the other hand, using AAO as a template, ZnS-ZnO core-shell nanotubes could be synthesized using atomic layer deposition process along with the sulfuration conversion of the ZnO nanotube array. This ZnO-ZnS core-shell nanotube structure could be confirmed by x-ray photoelectron spectroscopy (XPS) analysis. In addition, an enhanced UV emission along with the reduced visible emission was also detected for the ZnO/ZnS core-shell nanotubes..
机译:通过在200℃的乙二胺(EN)水溶液存在下通过水热处理合成紫硝钛矿ZBS纳米棒后,通过在650℃下以650℃下的氧气退火3-5分钟,容易地获得ZnS-ZnO核 - 壳纳米棒。清楚地检测到450-550nm可见范围中的强宽峰,并且在水热ZnS纳米棒上开发ZnO壳后,可以大大提高其峰强度。另一方面,使用AAO作为模板,可以使用原子层沉积工艺合成ZnS-ZnO核 - 壳纳米管,以及ZnO纳米管阵列的硫化转化。该ZnO-ZnS核心壳纳米管结构可以通过X射线光电子能谱(XPS)分析来确认。另外,对于ZnO / ZnS核心壳纳米管也检测到增强的UV发射以及降低的可见发射。

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