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具有高水下粘附力的超疏水壁虎脚及其仿生材料。

Superhydrophobic gecko feet with high adhesive forces towards water and their bio-inspired materials.

机构信息

Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry and Environment, Beihang University, Beijing, 100191, PR China.

出版信息

Nanoscale. 2012 Feb 7;4(3):768-72. doi: 10.1039/c1nr11369k. Epub 2011 Dec 2.

Abstract

Functional integration is an inherent characteristic for multiscale structures of biological materials. In this contribution, we first investigate the liquid-solid adhesive forces between water droplets and superhydrophobic gecko feet using a high-sensitivity micro-electromechanical balance system. It was found, in addition to the well-known solid-solid adhesion, the gecko foot, with a multiscale structure, possesses both superhydrophobic functionality and a high adhesive force towards water. The origin of the high adhesive forces of gecko feet to water could be attributed to the high density nanopillars that contact the water. Inspired by this, polyimide films with gecko-like multiscale structures were constructed by using anodic aluminum oxide templates, exhibiting superhydrophobicity and a strong adhesive force towards water. The static water contact angle is larger than 150° and the adhesive force to water is about 66 μN. The resultant gecko-inspired polyimide film can be used as a "mechanical hand" to snatch micro-liter liquids. We expect this work will provide the inspiration to reveal the mechanism of the high-adhesive superhydrophobic of geckos and extend the practical applications of polyimide materials.

摘要

功能整合是生物材料多尺度结构的固有特性。在本研究中,我们首次使用高灵敏度微机电平衡系统研究了液-固水滴与超疏水壁虎脚之间的附着力学。结果表明,除了众所周知的固-固附着,具有多尺度结构的壁虎脚同时具有超疏水性和对水的高附着能力。壁虎脚对水的高附着能力源于与水接触的高密度纳米柱。受此启发,通过使用氧化铝模板制备了具有类壁虎多尺度结构的聚酰亚胺薄膜,表现出超疏水性和对水的强附着能力。静态水接触角大于 150°,对水的附着力约为 66 μN。这种受壁虎启发的聚酰亚胺薄膜可用作抓取微升液体的“机械手”。我们希望这项工作能够为揭示壁虎高附着超疏水性的机制提供启示,并拓展聚酰亚胺材料的实际应用。

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