4.8 Article

Moulding technique demonstrates the contribution of surface geometry to the super-hydrophobic properties of the surface of a water strider

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ACTA BIOMATERIALIA
卷 4, 期 3, 页码 766-770

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ELSEVIER SCI LTD
DOI: 10.1016/j.actbio.2008.01.002

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setae; microtrichia; cuticle; contact angle; patterned polymer

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Water striders (Insecta, Heteroptera, Gerridae) have a complex three-dimensional waterproof hairy cover which renders them super-hydrophobic. This paper experimentally demonstrates for the first time the mechanism of the super-hydrophobicity of the cuticle of water striders. The complex two-level microstructure of the surface, including the smallest microtrichia (200-300 nm wide, 7-9 mu m long), was successfully replicated using a two-step moulding technique. The mould surface exhibited super-hydrophobic properties similar to the original insect surface. The average water contact angle (CA) of the mould was 164.7 degrees, whereas the CA of the flat polymer was about 92 degrees. These results show that (i) in water striders, the topography of the surface plays a dominant role in super-hydrophobicity, (ii) very low surface energy bulk material (typically smaller than 0.020 N m(-1)) is not necessary to achieve super-hydrophobicity; and (3) the two-step moulding technique may be used to mimic quite complex biological functional surfaces. (D 2008 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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