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首页> 外文期刊>Nanotechnology >A geometry controllable approach for the fabrication of biomimetic hierarchical structure and its superhydrophobicity with near-zero sliding angle
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A geometry controllable approach for the fabrication of biomimetic hierarchical structure and its superhydrophobicity with near-zero sliding angle

机译:仿生分层结构及其接近于零滑角的超疏水性的​​几何可控方法

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摘要

A simple, geometry controllable method is presented for fabricating multiscale hierarchical polymer structures that exhibit superhydrophobic water-repellent properties with near-zero sliding angle over a large area. A UV-assisted micromolding technique is used to create a microtexture with an ultraviolet (UV)-curable resin containing Al2O3 nanoparticles. A subsequent treatment of ultraviolet ozone (UVO) leads to the formation of nanoscale roughness over the as-formed microstructured surface, resulting in a dual-scale surface texture similar to a lotus leaf, in a reproducible manner. After hydrophobization with a self-assembled monolayer (SAM) in the liquid phase, this hierarchical surface exhibits stable superhydrophobic characteristics, having a water contact angle close to 160 degrees and a contact angle (CA) hysteresis as low as 1 degrees. These characteristics did not change even after exposure to ambient conditions for 6 months.
机译:提出了一种简单的几何可控方法,用于制造多尺度的分级聚合物结构,该结构在大面积上具有接近零的滑动角,具有超疏水的憎水性能。使用紫外线辅助的微成型技术,使用含有Al2O3纳米粒子的可紫外线(UV)固化树脂来创建微纹理。紫外线臭氧(UVO)的后续处理导致在形成的微结构化表面上形成纳米级粗糙度,从而以可重复的方式产生类似于荷叶的双级表面纹理。在液相中用自组装单分子层(SAM)疏水化后,该分层表面显示出稳定的超疏水特性,其水接触角接近160度,接触角(CA)滞后低至1度。即使暴露于环境条件6个月,这些特性也没有改变。

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