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Role of concentration and temperature on well-aligned ZnO nanorod by lowtemperature wet chemical bath deposition method

机译:低温湿化学浴沉积法中浓度和温度对取向良好的ZnO纳米棒的作用

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Well-aligned ZnO nanorod arrays were synthesized by low-temperature wet chemical bath deposition (CBD) method on Si substrate under different conditions. Results illustrated that dense ZnO nanorods with hexagonal wurtzite structure were vertically well-aligned and uniformly distributed on the substrate. The effects of precursor concentration and growth temperature on nanorods morphology were investigated systematically. The mechanism for the effect of preparation parameters was elucidated based on the chemical process of CBD and basic nucleation theory. It is demonstrated that the controllable growth of well-aligned ZnO nanorods can be realized by readily adjusting the preparation parameters. Strong near-band edge ultraviolet (UV) emission were observed in room temperature absorbance spectra for the samples prepared under optimized parameters, yet the usually observed defect related deep level emissions were nearly undetectable, indicating high optical quality ZnO nanorod arrays could be achieved via this easy process chemical approach at low temperature
机译:通过低温湿化学浴沉积(CBD)方法在不同条件下在Si衬底上合成了排列良好的ZnO纳米棒阵列。结果表明,具有六方纤锌矿结构的致密ZnO纳米棒在垂直方向上排列良好并均匀分布在基底上。系统研究了前驱体浓度和生长温度对纳米棒形态的影响。基于CBD的化学过程和基本成核理论,阐明了制备参数影响的机理。结果表明,通过容易地调节制备参数,可以实现取向良好的ZnO纳米棒的可控生长。在优化参数下制备的样品在室温吸收光谱中观察到强的近带边缘紫外(UV)发射,但通常观察到的与缺陷有关的深能级发射几乎无法检测到,表明可以通过此方法获得高光学质量的ZnO纳米棒阵列低温下易于处理的化学方法

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