首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Lotus-Like Biomimetic Hierarchical Structures Developed by the Self-Assembly of Tubular Plant Waxes
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Lotus-Like Biomimetic Hierarchical Structures Developed by the Self-Assembly of Tubular Plant Waxes

机译:管状植物蜡的自组装形成的类似莲花的仿生层次结构

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摘要

Hierarchical roughness is beneficial for superhydrophobic and self-cleaning surfaces. Biomimetic hierarchical surfaces were fabricated by replication of a micropatterned master surface and self-assembly of two kinds of tubular wax crystals, which naturally occur on the superhydrophobic leaves of Tropaeolum majus (L.) and Leymus arenarius (L.). These tubule forming waxes are multicomponent waxes, composed of a mixture of long chain hydrocarbons. Thermal evaporation of wax was used to cover artificial surfaces with a homogeneous wax layer and tubule formation was initiated by temperature and a solvent vapor phase. Based on this technique, various nanostructures produced by three-dimensional tubular waxes have been fabricated by changing the wax mass. Fabricated structures and surface chemistry mimic the hierarchical surfaces of superhydrophobic and self-cleaning plant surfaces. The influence of structures on superhydrophobicity at different length scales is demonstrated by investigation of contact angle, contact angle hysteresis, droplet evaporation and propensity of air pocket formation as well as adhesive forces. The optimal structural parameters for superhydrophobicity and low static contact angle hysteresis, superior to natural plant leaves including Lotus, have been identified and provide a useful guide for development of biomimtetic superhydrophobic surfaces.
机译:分层粗糙度对于超疏水和自清洁表面是有利的。仿生分层表面是通过复制微图案主表面和两种管状蜡晶体的自组装而制造的,这两种自然存在于Tropaeolum majus(L.)和Leymus arenarius(L.)的超疏水叶片上。这些形成小管的蜡是由长链烃的混合物组成的多组分蜡。蜡的热蒸发用于覆盖均质蜡层的人造表面,并通过温度和溶剂汽相引发小管形成。基于该技术,已经通过改变蜡的质量来制造由三维管状蜡产生的各种纳米结构。预制结构和表面化学性质模仿了超疏水和自清洁植物表面的分层表面。通过研究接触角,接触角滞后,液滴蒸发和气穴形成倾向以及粘附力,证明了结构在不同长度尺度上对超疏水性的​​影响。已经确定了超疏水性和低静态接触角滞后的最佳结构参数,优于包括莲花的天然植物叶片,并为开发仿生超疏水性表面提供了有用的指导。

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