Lee Haeshin, Lee Bruce P, Messersmith Phillip B
Biomedical Engineering Department, Northwestern University, Evanston, Illinois 60208, USA.
Nature. 2007 Jul 19;448(7151):338-41. doi: 10.1038/nature05968.
The adhesive strategy of the gecko relies on foot pads composed of specialized keratinous foot-hairs called setae, which are subdivided into terminal spatulae of approximately 200 nm (ref. 1). Contact between the gecko foot and an opposing surface generates adhesive forces that are sufficient to allow the gecko to cling onto vertical and even inverted surfaces. Although strong, the adhesion is temporary, permitting rapid detachment and reattachment of the gecko foot during locomotion. Researchers have attempted to capture these properties of gecko adhesive in synthetic mimics with nanoscale surface features reminiscent of setae; however, maintenance of adhesive performance over many cycles has been elusive, and gecko adhesion is greatly diminished upon full immersion in water. Here we report a hybrid biologically inspired adhesive consisting of an array of nanofabricated polymer pillars coated with a thin layer of a synthetic polymer that mimics the wet adhesive proteins found in mussel holdfasts. Wet adhesion of the nanostructured polymer pillar arrays increased nearly 15-fold when coated with mussel-mimetic polymer. The system maintains its adhesive performance for over a thousand contact cycles in both dry and wet environments. This hybrid adhesive, which combines the salient design elements of both gecko and mussel adhesives, should be useful for reversible attachment to a variety of surfaces in any environment.
壁虎的粘附策略依赖于由称为刚毛的特殊角质化脚毛组成的脚垫,这些刚毛又细分为约200纳米的末端匙形 spatulae(参考文献1)。壁虎脚与相对表面之间的接触会产生足以使壁虎附着在垂直甚至倒置表面上的粘附力。尽管粘附力很强,但这种粘附是暂时的,使得壁虎在运动过程中能够快速分离和重新附着其脚。研究人员试图在具有类似刚毛的纳米级表面特征的合成模拟物中捕捉壁虎粘附的这些特性;然而,在许多循环中保持粘附性能一直难以实现,并且壁虎在完全浸入水中时粘附力会大大降低。在此,我们报告一种混合的仿生粘合剂,它由一系列纳米制造的聚合物柱组成,这些柱子涂有一层合成聚合物薄层,该合成聚合物模仿贻贝固着物中发现的湿粘附蛋白。当用模仿贻贝的聚合物涂层时,纳米结构聚合物柱阵列的湿粘附力增加了近15倍。该系统在干燥和潮湿环境中经过超过一千次接触循环仍能保持其粘附性能。这种结合了壁虎和贻贝粘合剂显著设计元素的混合粘合剂,应该可用于在任何环境中与各种表面进行可逆附着。