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超疏水蝴蝶翅膀的定向粘附

Directional adhesion of superhydrophobic butterfly wings.

作者信息

Zheng Yongmei, Gao Xuefeng, Jiang Lei

机构信息

Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100080, P. R. China.

出版信息

Soft Matter. 2007 Jan 23;3(2):178-182. doi: 10.1039/b612667g.

Abstract

We showed directional adhesion on the superhydrophobic wings of the butterfly . A droplet easily rolls off the surface of the wings along the radial outward (RO) direction of the central axis of the body, but is pinned tightly against the RO direction. Interestingly, these two distinct states can be tuned by controlling the posture of the wings (downward or upward) and the direction of airflow across the surface (along or against the RO direction), respectively. Research indicated that these special abilities resulted from the direction-dependent arrangement of nano-tips on ridging nano-stripes and micro-scales overlapped on the wings at the level, where two distinct contact modes of a droplet with orientation-tuneable microstructures occur and thus produce different adhesive forces. We believe that this finding will help the design of smart, fluid-controllable interfaces that may be applied in novel microfluidic devices and directional, easy-cleaning coatings.

摘要

我们展示了蝴蝶超疏水翅膀上的定向粘附现象。液滴很容易沿着身体中轴线的径向向外(RO)方向从翅膀表面滚落,但却紧紧地附着在与RO方向相反的方向上。有趣的是,这两种不同的状态可以分别通过控制翅膀的姿态(向下或向上)以及气流穿过表面的方向(沿着或与RO方向相反)来调节。研究表明,这些特殊能力源于翅膀上纳米脊条纹上纳米尖端的方向依赖性排列以及微观尺度的重叠,在这个层面上,液滴与具有方向可调微结构发生两种不同的接触模式,从而产生不同的粘附力。我们相信这一发现将有助于设计智能、流体可控的界面,这些界面可应用于新型微流控设备和定向、易清洁涂层。

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