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超疏水和超亲水植物表面:对仿生材料的一种启发。

Superhydrophobic and superhydrophilic plant surfaces: an inspiration for biomimetic materials.

作者信息

Koch Kerstin, Barthlott Wilhelm

机构信息

Nees Institute for Biodiversity of Plants, Rheinische Friedrich-Wilhelms University of Bonn, Meckenheimer Allee 170, 53115 Bonn, Germany.

出版信息

Philos Trans A Math Phys Eng Sci. 2009 Apr 28;367(1893):1487-509. doi: 10.1098/rsta.2009.0022.

Abstract

The diversity of plant surface structures, evolved over 460 million years, has led to a large variety of highly adapted functional structures. The plant cuticle provides structural and chemical modifications for surface wetting, ranging from superhydrophilic to superhydrophobic. In this paper, the structural basics of superhydrophobic and superhydrophilic plant surfaces and their biological functions are introduced. Wetting in plants is influenced by the sculptures of the cells and by the fine structure of the surfaces, such as folding of the cuticle, or by epicuticular waxes. Hierarchical structures in plant surfaces are shown and further types of plant surface structuring leading to superhydrophobicity and superhydrophilicity are presented. The existing and potential uses of superhydrophobic and superhydrophilic surfaces for self-cleaning, drag reduction during moving in water, capillary liquid transport and other biomimetic materials are shown.

摘要

植物表面结构的多样性历经4.6亿年进化而来,造就了大量高度适应的功能结构。植物角质层为表面湿润提供了结构和化学修饰,范围从超亲水性到超疏水性。本文介绍了超疏水和超亲水植物表面的结构基础及其生物学功能。植物中的湿润受细胞形态以及表面精细结构(如角质层褶皱)或表皮蜡质的影响。展示了植物表面的分层结构,并介绍了导致超疏水性和超亲水性的其他植物表面结构类型。还展示了超疏水和超亲水表面在自清洁、水中移动时减阻、毛细管液体传输及其他仿生材料方面的现有及潜在用途。

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