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Superhydrophobic and transparent ZnO thin films synthesized by spray pyrolysis technique

机译:喷雾热解法合成超疏水透明ZnO薄膜

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摘要

Superhydrophobic and transparent zinc oxide (ZnO) thin films were deposited by a simple and cost effective spray pyrolysis technique (SPT) onto the glass substrates at 723 K from an aqueous zinc acetate precursor solution. The solution concentration was varied from 0.1 to 0.4 M and its effect on structural, morphological, wetting and optical properties of ZnO thin films was studied. The synthesized films were found to be polycrystalline, with preferential growth along c-axis. A slight improvement in the crystallite size and texture coefficient is observed as the concentration of the solution is increased. SEM micrographs show the uniform distribution of spherical grains of about 60-80 nm grain size. The films were specular and highly transparent with average transmittance of about 85%. The spectrum shows sharp absorption band edge at 381 nm, corresponding to optical gap of 3.25 eV. The samples of texture coefficient less than 90% and roughness less than 75 nm are hydrophobic and above these values they become superhydrophobic in nature. The hydrophobicity coupled with high transmittance is of great importance in commercial application such as transparent self-cleaning surfaces, anti-fog, anti-snow, fluid microchips and microreactors.
机译:通过简单且经济高效的喷雾热解技术(SPT)将超疏水透明的氧化锌(ZnO)薄膜从醋酸锌前体水溶液中以723 K的温度沉积到玻璃基板上。溶液浓度从0.1到0.4 M不等,研究了其对ZnO薄膜的结构,形态,润湿性和光学性能的影响。发现合成膜是多晶的,沿c轴优先生长。随着溶液浓度的增加,微晶尺寸和织构系数略有改善。 SEM显微照片显示出约60-80nm晶粒尺寸的球形晶粒的均匀分布。这些膜是镜面的并且高度透明,平均透射率为约85%。光谱显示在381 nm处有清晰的吸收带边缘,对应于3.25 eV的光学间隙。质地系数小于90%且粗糙度小于75 nm的样品是疏水的,超过这些值时,它们在本质上会变成超疏水的。疏水性和高透射率在商业应用中非常重要,例如透明的自清洁表面,防雾,防雪,流体微芯片和微反应器。

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