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Fabrication of needle-like ZnO nanorods arrays by a low-temperature seed-layer growth approach in solution

机译:溶液中低温晶种层生长法制备针状ZnO纳米棒阵列

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Uniform, large-scale, and well-aligned needle-like ZnO nanorods with good photoluminescence and photocatalysis properties on Zn substrates, have been successfully fabricated using a simple low-temperature seed-layer growth approach in solution (50 ℃). The formation of ZnO seed-layer by the anodic oxidation technique (AOT) plays an important role in the subsequent growth of highly oriented ZnO nanorods arrays. Temperature also proved to be a significant factor in the growth of ZnO nanorods and had a great effect on their optical properties. X-ray diffraction (XRD) analysis, selected-area electron diffraction (SAED) pattern and high-resolution TEM (HRTEM) indicated that the needle-like ZnO nanorods were single crystal in nature and that they had grown up preferentially along the [0001] direction. The well-aligned ZnO nanorods arrays on Zn substrates exhibited strong UV emission at around 380 nm at room temperature. To investigate their potential as photocatalysts, degradation of pentachlorophenol (PCP) in aqueous solution was carried out using photocatalytic processes, with comparison to direct photolysis. After 1 h, the degradation efficiencies of PCP by direct photolysis and photocatalytic processes achieved 57% and 76% under given experimental conditions, respectively. This improved degradation efficiency of PCP illustrates that ZnO nanorods arrays on Zn substrates have good photocatalytic activity. This simple low-temperature seed-layer growth approach in solution resulted in the development of an effective and low-cost fabrication process for high-quality ZnO nanorods arrays with good optical and photocatalytic properties that can be applicable in many fields such as photocatalysis, photovoltaic cells, luminescent sensors, and photoconductive sensors.
机译:利用简单的低温种子层生长方法,在溶液中(50℃)成功地制备了均匀,大尺寸,排列良好的针状ZnO纳米棒,在Zn衬底上具有良好的光致发光和光催化性能。通过阳极氧化技术(AOT)形成的ZnO晶种层在随后生长的高取向ZnO纳米棒阵列中起着重要作用。温度也被证明是ZnO纳米棒生长的重要因素,并且对其光学性能有很大影响。 X射线衍射(XRD)分析,选择区域电子衍射(SAED)模式和高分辨率TEM(HRTEM)表明,针状ZnO纳米棒本质上是单晶,并且优先沿[0001]长大。 ]方向。 Zn衬底上排列良好的ZnO纳米棒阵列在室温下在约380 nm处表现出较强的紫外线发射。为了研究其作为光催化剂的潜力,与直接光解相比,使用光催化方法对水溶液中的五氯苯酚(PCP)进行了降解。 1小时后,在给定的实验条件下,直接光解和光催化过程的PCP降解效率分别达到57%和76%。 PCP降解效率的提高表明Zn衬底上的ZnO纳米棒阵列具有良好的光催化活性。这种简单的溶液中低温种子层生长方法导致开发出了一种有效且低成本的制造工艺,用于具有良好光学和光催化性能的高质量ZnO纳米棒阵列,可应用于许多领域,例如光催化,光伏电池,发光传感器和光电导传感器。

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