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Facile synthesis of superhydrophobic surface of ZnO nanoflakes: chemical coating and UV-induced wettability conversion

机译:ZnO纳米片超疏水表面的简便合成:化学涂层和紫外线诱导的可湿性转化

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摘要

This work reports an oriented growth process of two-dimensional (2D) ZnO nanoflakes on aluminum substrate through a low temperature hydrothermal technique and proposes the preliminary growth mechanism. A bionic superhydrophobic surface with excellent corrosion protection over a wide pH range in both acidic and alkaline solutions was constructed by a chemical coating treatment with stearic acid (SA) molecules on ZnO nanoflakes. It is found that the superhydrophobic surface of ZnO nanoflake arrays shows a maximum water contact angle (CA) of 157° and a low sliding angle of 8°, and it can be reversibly switched to its initial superhydrophilic state under ultraviolet (UV) irradiation, which is due to the UV-induced decomposition of the coated SA molecules. This study is significant for simple and inexpensive building of large-scale 2D ZnO nanoflake arrays with special wettability which can extend the applications of ZnO films to many other important fields.
机译:这项工作报告了通过低温水热技术在铝基板上二维(2D)ZnO纳米薄片的定向生长过程,并提出了初步的生长机理。通过在ZnO纳米薄片上用硬脂酸(SA)分子进行化学涂层处理,构建了一种在酸性和碱性溶液中都具有很强的防腐性能的仿生超疏水表面,该表面在酸性和碱性溶液中均具有很强的防腐性能。发现ZnO纳米片阵列的超疏水表面显示最大水接触角(CA)为157°,低滑动角为8°,并且可以在紫外线(UV)照射下可逆地切换为其初始超亲水状态,这是由于紫外线导致涂层的SA分子分解所致。这项研究对于简单且廉价的具有特殊润湿性的大规模二维ZnO纳米片阵列的构建具有重要意义,该阵列可以将ZnO膜的应用扩展到许多其他重要领域。

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