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Wetting Transition on Micro/Nanostructured ZnO Layers

机译:微/纳米结构ZnO层上的润湿转变

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This paper reports on the electrowetting behavior on three microanostructured ZnO (zinc oxide) layers with different roughnesses. ZnO nanorods with diameters of 100 nm and heights of 1 μm (sample A), 3 μm (sample B), and micro flower-like layer with a diameter of 5 um (sample C) were fabricated on the ITO glass substrates. This was followed by deposition of Teflon to achieve superhydrophobic property on the prepared surfaces. On these three Teflon modified ZnO layers, reversible electrowetting phenomenon was observed on the sample B with applied voltages of less man 40 V, and also on the sample A with a large range of voltage in air environment, but irreversible electrowetting behavior was observed on sample C. The wettability change and reversibility have been analyzed, and it is shown that the differences in the structures of the ZnO layers play a crucial role in the distinct electrowetting performances.
机译:本文报道了在具有不同粗糙度的三个微米/纳米结构的ZnO(氧化锌)层上的电润湿行为。在ITO玻璃基板上制作了直径为100 nm,高度为1μm(样品A),3μm(样品B)的ZnO纳米棒,以及直径为5 um(样品C)的微花状层。随后沉积聚四氟乙烯以在制备的表面上实现超疏水性能。在这三个特氟龙改性的ZnO层上,施加电压小于40 V的样品B以及在空气环境中电压范围较大的样品A上均观察到可逆的电润湿现象,但在样品上观察到不可逆的电润湿行为分析了润湿性的变化和可逆性,结果表明,ZnO层的结构差异在不同的电润湿性能中起着至关重要的作用。

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