4.4 Article Proceedings Paper

Surface characterization and adhesion and friction properties of hydrophobic leaf surfaces

期刊

ULTRAMICROSCOPY
卷 106, 期 8-9, 页码 709-719

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ELSEVIER
DOI: 10.1016/j.ultramic.2005.10.007

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plant leaves; hydrophobic; microbumps; roughness; wax

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Super-hydrophobic surfaces as well as low adhesion and friction are desirable for various industrial applications. Certain plant leaves are known to be hydrophobic in nature. These leaves are hydrophobic due to the presence of microbumps and a thin wax film on the surface of the leaf. The purpose of this study is to fully characterize the leaf surface and to separate out the effects of the microbumps and the wax on the hydrophobicity. Furthermore, the adhesion and friction properties of the leaves, with and without wax, are studied. Using an optical profiler and an atomic/friction force microscope (AFM/FFM), measurements on the hydrophobic leaves, both with and without wax, were made to fully characterize the leaf surface. Using a model that predicts contact angle as a function of roughness, the roughness factor for the hydrophobic leaves has been calculated, which is used to calculate the contact angle for a flat leaf surface. It is shown that both the microbumps and the wax play an equally important role in the hydrophobic nature as well as adhesion and friction of the leaf. This study will be useful in developing super-hydrophobic surfaces. (c) 2006 Elsevier B.V. All rights reserved.

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