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天堂鸟叶作为各向异性润湿和超疏水性的天然模板。

Strelitzia reginae leaf as a natural template for anisotropic wetting and superhydrophobicity.

机构信息

Center for Biomolecular Nanotechnologies @UNILE, Istituto Italiano di Tecnologia, Arnesano (LE), Italy.

出版信息

Langmuir. 2012 Mar 20;28(11):5312-7. doi: 10.1021/la300243x. Epub 2012 Mar 8.

Abstract

Artificial surfaces that exhibit unidirectional water spreading and superhydrophobicity are obtained by Strelitzia reginae leaves. Both green and dried leaves are used, thus exploiting the plant senescence. We demonstrate that the natural drying process of the leaves strongly affects the surface morphology and wettability. Polymeric stamps from the green leaf show an arrangement of periodic microridges/microgrooves that favor anisotropic wetting, with a water contact angle (WCA) variation of about 21% along the two principal directions. Instead, the shrinkage of the leaf tissue, as a consequence of the natural dehydration process, induces an enhancement of the superficial corrugation. This results in the establishment of a superhydrophobic state, which shows a WCA of up to 160°, and water rolling off. S. reginae leaves are therefore easily accessible stamps suitable for controlling wettability and realizing surfaces that exhibit various wetting behaviors.

摘要

具有单向导水和超疏水性能的人工表面是由鹤望兰叶片获得的。既可以使用新鲜叶片,也可以使用干燥叶片,从而充分利用了植物的衰老过程。我们证明了叶片的自然干燥过程强烈影响表面形态和润湿性。来自新鲜叶片的聚合物印章显示出周期性微脊/微槽的排列,有利于各向异性润湿,在两个主要方向上的水接触角(WCA)变化约为 21%。相反,由于自然脱水过程,叶片组织的收缩导致表面波纹的增强。这导致超疏水状态的建立,其水接触角(WCA)高达 160°,并且水会滚落。因此,鹤望兰叶片是易于获得的适合控制润湿性并实现具有各种润湿行为的表面的印章。

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