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Nanostructured ZnO thin films for self-cleaning applications

机译:用于自清洁应用的纳米结构ZnO薄膜

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摘要

Controlling the properties of nanostructured zinc oxide (ZnO) is an interesting way to broaden its multifunctionality. ZnO nanostructured films were grown on glass substrates under different conditions by a simple two-step wet chemical method. A low-cost successive ionic layer adsorption and reaction (SILAR) method was used to grow ZnO seed layers at 80 °C. Then, different hierarchical based ZnO nanostructured thin films were deposited onto the ZnO seed layers by chemical bath deposition (CBD). The influence of deposition time (tD) and pH on the surface morphology, wettability behavior, structural and optical properties of the ZnO nanostructured films were systematically investigated. The structural, morphological, optical and wetting properties were studied by X-ray diffraction (XRD), field emission scanning microscopy (FE-SEM), UV-Vis spectrophotometer, and water contact angle (WCA) measurement, respectively. The surface morphology revealed a complex and orientated hierarchical based ZnO nanostructured films with diverse shapes from hexagonal nanorods to hexagonal nanoplates and even much more complex plates/rods and flower-like shapes by changing deposition time and pH of the precursor. XRD results confirm the synthesis of nanostructured ZnO of the hexagonal structure with a preferential orientation along the (002) lattice plane. The average crystallite size, D, is altered between 41.41 to 68.43 nm dependent on the morphology of the ZnO film and pH of the precursor. At pH 6.5, the films are hydrophilic for 10 h ≤ tD ≤ 6 h and hydrophobic for 6 h < tD < 10 h. The wetting properties of the films were enhanced by increasing or decreasing pH around 6.5. Morphology and thickness of the ZnO nanostructure could efficiently control the transmittance, absorbance, optical band gap, and the extinction coefficient of the films. The optical band gap is blue shifted from 2.45 to 3.62 eV@pH 6.5 as the deposition time increased from 2 to 8 h and blue shifted from 2.72 to 3.62 eV@8 h as the pH value increased from 5.5 to 6.5. The existence of stable hydrophobic zinc oxide nanostructured films at room temperature at a large-scale and with band gaps around 3.62 eV supports their use in self-cleaning and gas sensing applications.
机译:控制纳米结构氧化锌(ZnO)的性质是扩展其多功能性的一种有趣方法。通过简单的两步湿化学方法,在不同条件下在玻璃基板上生长ZnO纳米结构薄膜。低成本连续离子层吸附和反应(SILAR)方法用于在80°C下生长ZnO种子层。然后,通过化学浴沉积(CBD)将不同的基于层次的ZnO纳米结构薄膜沉积到ZnO种子层上。沉积时间( t D )和pH值对ZnO纳米结构薄膜的表面形貌,润湿性,结构和光学性能的影响系统地调查。分别通过X射线衍射(XRD),场发射扫描显微镜(FE-SEM),UV-Vis分光光度计和水接触角(WCA)测量研究了结构,形态,光学和润湿性能。表面形态揭示了通过改变前驱体的沉积时间和pH值,具有复杂且定向的基于层次的ZnO纳米结构薄膜,其形状从六边形纳米棒到六边形纳米板,甚至更复杂的板/棒和花状形状。 XRD结果证实了六边形结构的纳米结构ZnO的合成,该结构沿(002)晶格面具有优先取向。平均晶粒尺寸 D 在41.41至68.43 nm之间变化,具体取决于ZnO膜的形态和前体的pH。在pH 6.5时,薄膜的亲水性在 t D ≤6 h时保持亲水性,疏水性在 t 6h时保持疏水性。 em> D <10小时。通过增加或降低6.5左右的pH可以增强薄膜的润湿性能。 ZnO纳米结构的形貌和厚度可以有效地控制薄膜的透射率,吸收率,光学带隙和消光系数。随着沉积时间从2小时增加到8小时,光学带隙从2.45蓝色变为3.62 eV @ 8小时,随着pH值从5.5增加到6.5蓝色从2.72改变到3.62 eV @ 8 h。稳定的疏水性氧化锌纳米结构薄膜在室温下大规模存在,并且带隙约为3.62 eV,支持将其用于自清洁和气体传感应用。

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