首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of methanol ratio in mixed solvents on optical properties and wettability of ZnO films by cathodic electrodeposition
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Effect of methanol ratio in mixed solvents on optical properties and wettability of ZnO films by cathodic electrodeposition

机译:混合溶剂中甲醇比对阴极电沉积ZnO薄膜光学性能和润湿性的影响

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摘要

ZnO thin films were prepared in the electrolyte with different methanol ratio by cathodic electrodeposition method. Microstructure, surface morphology, optical properties and wettability of the thin films were investigated by X-ray diffractometer, field-emission scanning electron microscope, ultraviolet-visible spectroscope, fluorescence spectrometer and water contact angle apparatus. Increase of methanol ratio in the solvents may restrain the (002) plane preferential orientation in some extent. Change of current density curves with the ratio of methanol in the solution play a vital role on electrochemical reaction kinetics, microstructure and/or surface morphology of ZnO thin films. With the methanol ratio increase from 0 to 0.8, the surface morphology changes from nanorods to net-like nanostructure. The adsorbed NO_3~- ions on the polar planes hinder the crystal growth along the c-axis and redirect the growth direction along the nonpolar planes. The maximum and minimum band gaps have been obtained in the ZnO thin films with the methanol ratio of 0.4 and 0.6, respectively. Change of contact angle before UV irradiation may be related to surface morphology and oxygen vacancies. The maximum light-induced water contact angle change has been observed in the sample with the methanol ratio of 0.8. The results may be attributed to the higher surface roughness and net-like morphology.
机译:采用阴极电沉积法在不同甲醇比的电解液中制备了ZnO薄膜。用X射线衍射仪,场发射扫描电子显微镜,紫外可见光谱仪,荧光光谱仪和水接触角仪对薄膜的微观结构,表面形貌,光学性能和润湿性进行了研究。溶剂中甲醇比例的增加可能会在一定程度上抑制(002)平面的择优取向。电流密度曲线随溶液中甲醇比例的变化对ZnO薄膜的电化学反应动力学,微观结构和/或表面形态起着至关重要的作用。随着甲醇比例从0增加到0.8,表面形态从纳米棒变为网状纳米结构。极性面上吸附的NO_3-离子阻碍了晶体沿c轴的生长,并使生长方向沿非极性面重新定向。在甲醇比分别为0.4和0.6的ZnO薄膜中,已获得最大和最小带隙。紫外线照射前接触角的变化可能与表面形态和氧空位有关。在甲醇比为0.8的样品中观察到最大的光诱导水接触角变化。结果可能归因于较高的表面粗糙度和网状形态。

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