Department of Chemical Engineering, National Chung Hsing University, 250 Kuo Kuang Road, Taichung, Taiwan.
J Colloid Interface Sci. 2013 Sep 1;405:51-7. doi: 10.1016/j.jcis.2013.05.040. Epub 2013 May 24.
Here, we report a simple and inexpensive bottom-up technology for fabricating superhydrophobic coatings with hierarchical micro-/nano-structures, which are inspired by the binary periodic structure found on the superhydrophobic compound eyes of some insects (e.g., mosquitoes and moths). Binary colloidal arrays consisting of exemplary large (4 and 30 μm) and small (300 nm) silica spheres are first assembled by a scalable Langmuir-Blodgett (LB) technology in a layer-by-layer manner. After surface modification with fluorosilanes, the self-assembled hierarchical particle arrays become superhydrophobic with an apparent water contact angle (CA) larger than 150°. The throughput of the resulting superhydrophobic coatings with hierarchical structures can be significantly improved by templating the binary periodic structures of the LB-assembled colloidal arrays into UV-curable fluoropolymers by a soft lithography approach. Superhydrophobic perfluoroether acrylate hierarchical arrays with large CAs and small CA hysteresis can be faithfully replicated onto various substrates. Both experiments and theoretical calculations based on the Cassie's dewetting model demonstrate the importance of the hierarchical structure in achieving the final superhydrophobic surface states.
在这里,我们报告了一种简单而廉价的自下而上的技术,用于制造具有分级微/纳米结构的超疏水涂层,这是受到一些昆虫(如蚊子和飞蛾)的超疏水复眼上发现的二元周期性结构的启发。由大(4 和 30 μm)和小(300nm)硅球组成的二元胶体阵列首先通过可扩展的 Langmuir-Blodgett(LB)技术以层层方式组装。经过氟硅烷表面改性后,自组装的分级粒子阵列变得超疏水,表观水接触角(CA)大于 150°。通过软光刻方法将 LB 组装胶体阵列的二元周期性结构模板化到可光固化氟聚合物中,可以显著提高具有分级结构的所得超疏水涂层的通量。具有大 CA 和小 CA 滞后的全氟醚丙烯酸酯分级阵列可以忠实复制到各种基底上。基于 Cassie 的脱湿模型的实验和理论计算都证明了分层结构在实现最终超疏水表面状态方面的重要性。