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Effect of growth time on Ti-doped ZnO nanorods prepared by low-temperature chemical bath deposition

机译:生长时间对低温化学浴沉积制备Ti掺杂ZnO纳米棒的影响

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摘要

Ti-doped ZnO nanorod arrays were grown onto Si substrate using chemical bath deposition (CBD) method at 93 °C. To investigate the effect of time deposition on the morphological, and structural properties, four Ti-doped ZnO samples were prepared at various deposition periods of time (2, 3.5, 5, and 6.5 h). FESEM images displayed high-quality and uniform nanorods with a mean length strongly dependent upon deposition time; i.e. it increases for prolonged growth time. Additionally, EFTEM images reveal a strong erosion on the lateral side for the sample prepared for 6.5 h as compared to 5 h. This might be attributed to the dissolution reaction of ZnO with for prolonged growth time. XRD analysis confirms the formation of a hexagonal wurtzite-type structure for all samples with a preferred growth orientation along the c-axis direction. The (100) peak intensity was enhanced and then quenched, which might be the result of an erosion on the lateral side of nanorods as seen in EFTEM. This study confirms the important role of growth time on the morphological features of Ti-doped ZnO nanorods prepared using CBD.
机译:使用化学浴沉积(CBD)方法在93°C下将掺钛的ZnO纳米棒阵列生长到Si衬底上。为了研究时间沉积对形态和结构特性的影响,在不同的沉积时间段(2、3.5、5和6.5h)制备了四个掺Ti的ZnO样品。 FESEM图像显示高质量且均匀的纳米棒,其平均长度在很大程度上取决于沉积时间。也就是说,它会增加以延长生长时间。此外,EFTEM图像显示,准备时间为6.5 h的样品与5 h相比,侧面腐蚀严重。这可能是由于ZnO的溶解反应延长了生长时间。 XRD分析证实了对于所有具有沿c轴方向的优选生长取向的样品的六方纤锌矿型结构的形成。 (100)峰强度先增强然后淬灭,这可能是纳米棒侧面腐蚀的结果,如EFTEM中所示。这项研究证实了生长时间对使用CBD制备的掺杂Ti的ZnO纳米棒的形态特征的重要作用。

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