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Control of hydrophobic surface and wetting states in ultra-flat ZnO films by GLAD method

机译:用GLAD方法控制超平坦ZnO薄膜的疏水表面和润湿状态

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Ultra-flat Zinc oxide (ZnO) films with natural hydrophobicity were sputtered onto glass substrates by glancing angle deposition (GLAD) method without addition of active oxygen at room temperature under different glancing angles relating to the sample holder. The sample holder was positioned at glancing angles of 0 degrees and 30 degrees, and the sputtering power was fixed at 75 W with low argon (Ar) pressure of 1 x 10(-2) Torr during deposition process. According to analysis of surface composition and structure, the naturally hydrophobic wetting state can be attributed to the different grain structure and hydrocarbon adsorbates on the top of the film surface. On the other hand, the interfacial water molecules near the surface of ultra-flat ZnO films are confirmed belong to the hydrophobic hydrogen structure by Fourier transform infrared/attenuated total reflection. In addition, the water contact angle was significantly improved by a simple factor of glancing angle. The water contact angle value of ultra-flat ZnO films increased from 90 degrees to 98 degrees while the sample holder is with glancing angle of 30 degrees. Moreover, our present ultra-flat ZnO films also exhibited excellent transparency over 80%, and the surface wetting switched from hydrophobic to hydrophilic states after exposing in ultraviolet (UV) surroundings. Then, the ZnO films could be freely and stably reversed back to hydrophobicity after stored in dark surroundings. This present study not only demonstrates that the natural wettability of ultra-flat ZnO films is strongly associated with surface composition and structure, but also provides an easy way to modulate and improve the surface wettability. This also extends the potential applications of ultra-flat ZnO thin films and aids a profound understanding for device design and material development. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过扫掠角沉积(GLAD)方法将具有自然疏水性的超平氧化锌(ZnO)膜溅射到玻璃基板上,而无需在室温下以与样品架相关的不同扫掠角添加活性氧。将样品架定位在0度和30度的掠射角,并且在沉积过程中,以1 x 10(-2)托的低氩(Ar)压将溅射功率固定在75W。根据表面组成和结构的分析,天然疏水的润湿状态可归因于不同的晶粒结构和碳氢化合物在薄膜表面顶部的吸附。另一方面,通过傅立叶变换红外/衰减全反射确定超平ZnO膜表面附近的界面水分子属于疏水氢结构。此外,通过简单的掠射角因素,可以大大改善水接触角。当样品架的掠射角为30度时,超平ZnO膜的水接触角值从90度增加到98度。此外,我们目前的超平型ZnO薄膜还具有超过80%的优异透明度,并且在暴露于紫外线(UV)环境后,表面润湿性从疏水状态转变为亲水状态。然后,在黑暗的环境中保存后,ZnO膜可以自由稳定地反转为疏水性。本研究不仅证明了超平整ZnO薄膜的自然润湿性与表面组成和结构密切相关,而且为调节和改善表面润湿性提供了一种简便的方法。这也扩展了超平坦ZnO薄膜的潜在应用,并有助于对器件设计和材料开发的深刻理解。 (C)2017 Elsevier B.V.保留所有权利。

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