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Nanostructured ZnO films in forms of rod, plate and flower: Electrodeposition mechanisms and characterization

机译:杆,板和花形式的纳米结构ZnO膜:电沉积机理和表征

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摘要

Uniformity and reproducibility of well-defined ZnO nanostructures are particularly important issues for fabrication and applications of these nanomaterials. In present study, we report selective morphology control during electrodeposition, by adjusting the hydroxyl generation rate and Zn(OH)(2) deposition. In presence of remarkably high chloride concentration (0.3M) and -1.0V deposition potential, slow precipitation conditions were provided in 5 mM Zn(NO3)(2) solution. By doing so, we have obtained highly ordered, vertically aligned and uniformly spaced hexagon shaped nanoplates, on ITO surface. We have also investigated the mechanism for shifting the morphology from rod/plate to flower like structure of ZnO, for better understanding the reproducibility. For this reason, the influence of various supporting electrolytes (sodium/ammonium salts of acetate) has been investigated for interpretation of the influence of OH- concentration nearby the surface. From rod to plate and flower nanostructures, X-ray photoelectron spectroscopy (XPS) and X-ray diffraction (XRD) analysis were realized for characterization, also the optical properties were studied. (C) 2016 Elsevier B.V. All rights reserved.
机译:明确定义的ZnO纳米结构的均匀性和可再现性对于这些纳米材料的制造和应用而言尤其重要。在当前的研究中,我们报告了通过调节羟基生成速率和Zn(OH)(2)沉积而在电沉积过程中进行的选择性形态控制。在存在极高的氯化物浓度(0.3M)和-1.0V沉积电位的情况下,在5 mM Zn(NO3)(2)溶液中提供了缓慢的沉淀条件。通过这样做,我们在ITO表面上获得了高度有序,垂直对齐且均匀分布的六角形纳米板。我们还研究了从ZnO的杆状/板状到花状结构转变形态的机理,以更好地理解可重复性。因此,已经研究了各种支持电解质(乙酸钠/铵盐)的影响,以解释表面附近OH浓度的影响。从棒状到板状和花朵状的纳米结构,实现了X射线光电子能谱(XPS)和X射线衍射(XRD)分析的表征,并研究了光学性质。 (C)2016 Elsevier B.V.保留所有权利。

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