Luo Weipeng, Yu Bin, Xiao Dingbang, Zhang Meng, Wu Xuezhong, Li Guoxi
College of Mechatronics Engineering and Automation, National University of Defense Technology, Changsha 410073, China.
QuantumCTeK Co., Ltd., Hefei 230031, China.
Materials (Basel). 2018 May 16;11(5):813. doi: 10.3390/ma11050813.
In this paper, we present a periodic hollowed-out pyramid microstructure with excellent superhydrophobicity. In our approach, T-topping pillars and capillary-induced self-assembly methods were combined with the photolithography process to fabricate a hollowed-out pyramid structure. First, a wideband ultraviolet source without a filter was used to fabricate the T-topping pillars during the exposure process; then, the evaporation-induced assembly collapsed the pillars and formed the hollowed-out pyramid structure. Scanning electron microscopy images showed the microstructures of the prepared surface. The contact angle of the surface was 154°. The surface showed excellent high temperature and ultraviolet irradiation tolerance, and the contact angle of the surface barely changed when the temperature dropped. This excellent environmental durability of our superhydrophobic surface has potential applications for self-cleaning and friction drag reduction under water.
在本文中,我们展示了一种具有优异超疏水性的周期性镂空金字塔微结构。在我们的方法中,将T形顶部柱体和毛细管诱导自组装方法与光刻工艺相结合,以制造镂空金字塔结构。首先,在曝光过程中使用无滤光片的宽带紫外光源来制造T形顶部柱体;然后,蒸发诱导组装使柱体坍塌并形成镂空金字塔结构。扫描电子显微镜图像显示了制备表面的微观结构。该表面的接触角为154°。该表面表现出优异的耐高温和抗紫外线辐射性能,当温度下降时,表面的接触角几乎没有变化。我们这种超疏水表面优异的环境耐久性在水下自清洁和减阻方面具有潜在应用。