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Effect of Temperature and Growth Time on Vertically Aligned ZnO Nanorods by Simplified Hydrothermal Technique for Photoelectrochemical Cells

机译:温度和生长时间对光电化学电池简化水热技术对垂直排列的ZnO纳米棒的影响

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摘要

Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to solar cells. ZnO was chosen over other materials because of its large exciton binding energy (60 meV) and its stability to high-energy radiation. In this study, ZnO nanorods were deposited on ITO glass via a simple dip coating followed by a hydrothermal growth. The morphological, structural and compositional characteristics of the prepared films were analyzed using X-ray diffractometry (XRD), field emission scanning electron microscopy (FESEM), and ultraviolet-visible spectroscopy (UV-Vis). Photoelectrochemical conversion efficiencies were evaluated via photocurrent measurements under calibrated halogen lamp illumination. Thin film prepared at 120 °C for 4 h of hydrothermal treatment possessed a hexagonal wurtzite structure with the crystallite size of 19.2 nm. The average diameter of the ZnO nanorods was 37.7 nm and the thickness was found to be 2680.2 nm. According to FESEM images, as the hydrothermal growth temperature increases, the nanorod diameter become smaller. Moreover, the thickness of the nanorods increase with the growth time. Therefore, the sample prepared at 120 °C for 4 h displayed an impressive photoresponse by achieving high current density of 0.1944 mA/cm2.
机译:尽管带隙很大,但ZnO在从气体传感器到太阳能电池的许多领域中具有广泛的适用性。之所以选择ZnO,是因为它的激子结合能大(60 meV),并且对高能辐射具有稳定性。在这项研究中,ZnO纳米棒通过简单的浸涂和水热生长沉积在ITO玻璃上。使用X射线衍射(XRD),场发射扫描电子显微镜(FESEM)和紫外可见光谱(UV-Vis)分析了制备的膜的形态,结构和组成特征。通过在校准的卤素灯照明下的光电流测量来评估光电化学转化效率。在120℃下进行4小时的水热处理的薄膜具有六方纤锌矿结构,微晶尺寸为19.2nm。 ZnO纳米棒的平均直径为37.7nm,厚度为2680.2nm。根据FESEM图像,随着水热生长温度的升高,纳米棒直径变小。而且,纳米棒的厚度随着生长时间而增加。因此,在120°C下制备4 h的样品通过获得0.1944 mA / cm 2 的高电流密度表现出令人印象深刻的光响应。

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