Zhang Peng, Liu Shiyuan, Lv Hao
State Key Laboratory of Digital Manufacturing Equipment and Technology, Huazhong University of Science and Technology, Wuhan 430074, China.
J Nanosci Nanotechnol. 2013 Feb;13(2):781-6. doi: 10.1166/jnn.2013.6013.
In nature, geckos have extraordinary adhesive capabilities. The multi-scale hierarchical structure of the gecko foot hairs, especially the high-aspect-ratio structure of its micro-scale seta and nano-scale spatulae is the critical factor of the gecko's ability to adopt and stick to any different surface with powerful adhesion force. In this paper, we present a simple and effective approach to fabricate dual-level hierarchical structures mimicking gecko foot hairs. Polydimethyl-siloxane (PDMS) hierarchical arrays were fabricated by demolding from a double stack mold that was composed of an SU-8 mold by thick film photolithography and a silicon mold by inductively coupled plasma (ICP) etching. Top pillars of the fabricated structures have 3 micom diameter and 18 microm in height, while base pillars have 25 microm diameter and 40 microm in height. The water droplet contact angle tests indicate that the hierarchical structures increase the hydrophobic property significantly compared with the single-level arrays and the unstructured polymers, exhibiting superhydrophobicity (154.2 degrees) like the Tokay gecko's (160.9 degrees). The shear force tests show that the top pillars make attachment through side contact with a value of about 0.25 N/cm2, and moreover, the hierarchical structures are demonstrated to be more suitable for contacting with rough surfaces.
在自然界中,壁虎具有非凡的粘附能力。壁虎脚毛的多尺度层次结构,尤其是其微尺度刚毛和纳米尺度匙突的高纵横比结构,是壁虎能够以强大的粘附力附着并粘在任何不同表面上的关键因素。在本文中,我们提出了一种简单有效的方法来制造模仿壁虎脚毛的双层层次结构。聚二甲基硅氧烷(PDMS)层次阵列是通过从由厚膜光刻法制作的SU-8模具和电感耦合等离子体(ICP)蚀刻法制作的硅模具组成的双层模具脱模而制成的。所制造结构的顶部支柱直径为3微米,高度为18微米,而底部支柱直径为25微米,高度为40微米。水滴接触角测试表明,与单层阵列和无结构聚合物相比,层次结构显著提高了疏水性,表现出超疏水性(154.2度),类似于蛤蚧的超疏水性(160.9度)。剪切力测试表明,顶部支柱通过侧面接触实现附着,其值约为0.25 N/cm²,此外,还证明层次结构更适合与粗糙表面接触。