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Photo-Controlled Wettability Switching by Conformal Coating of Nanoscale Topographies with Ultrathin Oxide Films

机译:通过用超薄氧化膜对纳米级形貌进行保形涂层的光控润湿性切换

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摘要

Here we explore the possibility of affecting the photoinduced wetting properties of nanostructures with tiny amounts of an inorganic modifier. Cicada wings are coated with a thin layer of ZnO by atomic layer deposition (ALD). We show that a few atomic layers of ZnO are sufficient to greatly modify the wetting properties. Our method only alters the surface chemistry, not the surface topography. Therefore the surface still exhibits high contact angles due to the pillars of the underlying cicada wing. At the same time, the wetting properties can be reversibly changed by UV light from nearly superhydrophobic to hydrophilic due to the ultrathin ZnO coating. We see that ALD has the potential to become a general method for modifying the photoinduced wetting properties of surfaces, keeping the topographical features of the original surface intact.
机译:在这里,我们探讨了用微量无机改性剂影响纳米结构的光致润湿性能的可能性。蝉的翅膀通过原子层沉积(ALD)涂上一层薄薄的ZnO。我们表明,ZnO的几个原子层足以大大改变润湿性能。我们的方法只改变表面化学,而不改变表面形貌。因此,由于下面的蝉翅的柱子,表面仍然表现出高接触角。同时,由于超薄的ZnO涂层,紫外光可以可逆地将润湿性能从近乎超疏水性转变为亲水性。我们看到,原子层沉积有可能成为改变表面光致润湿性能的通用方法,保持原始表面的形貌特征完好无损。

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