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使用分级聚苯胺球体制备仿生超疏水表面。

Fabrication of biomimetic superhydrophobic surface using hierarchical polyaniline spheres.

作者信息

Dong Xiaofei, Wang Jixiao, Zhao Yanchai, Wang Zhi, Wang Shichang

机构信息

Chemical Engineering Research Center, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, PR China.

出版信息

J Nanosci Nanotechnol. 2011 Jun;11(6):5083-8. doi: 10.1166/jnn.2011.4151.

Abstract

Wettability and water-adhesion behavior are the most important properties of solid surfaces from both fundamental and practical aspects. Here, the biomimetic superhydrophobic surface was fabricated via a simple coating process using polyaniline (PANI) microspheres which is covered with PANI nanowires as functional component, and poly-vinyl butyral (PVB, poly-vinyl alcohol crosslinked with n-butylaldehyde) as PANI microsphere adhering improvement agent to the substrate. The obtained surface displays superhydrophobic behavior without any modification with low-surface-energy materials such as thiol- or fluoroalkylsilane. The effects of coating process and the content of PANI microspheres on superhydropbobic behavior were discussed. Combine contact angle, water-adhesion measurements, scanning electronic microscopy (SEM) observations with selected areas energy dispersion spectrometer (EDS), the hydrophobic mechanism was proposed. The superhydrophobicity is attributed to a hierarchical morphology of PANI microspheres and the nature of the material itself. In addition, induced by van der Waals forces, the created superhydrophobic surface here shows the strong water-adhesion behavior. The surface has the combination performance of Lotus leaf and gecko's pad. The special wettability would be of great significance to the liquid microtransport in microfluid devices. The experimental results show that the ordinary coating process is a facile approach for fabrication of superhydrophobic surfaces.

摘要

从基础和实际层面来看,润湿性和水粘附行为都是固体表面最重要的特性。在此,通过一种简单的涂覆工艺制备了仿生超疏水表面,该工艺使用覆盖有聚苯胺(PANI)纳米线的聚苯胺微球作为功能组分,并使用聚乙烯醇缩丁醛(PVB,由聚乙烯醇与正丁醛交联而成)作为聚苯胺微球与基底的粘附增强剂。所获得的表面无需用诸如硫醇或氟代烷基硅烷等低表面能材料进行任何改性就能表现出超疏水行为。讨论了涂覆工艺和聚苯胺微球含量对超疏水行为的影响。结合接触角、水粘附测量、扫描电子显微镜(SEM)观察以及选区能谱仪(EDS)分析,提出了疏水机制。超疏水性归因于聚苯胺微球的分级形态以及材料本身的性质。此外,在此处由范德华力诱导产生的超疏水表面表现出较强的水粘附行为。该表面兼具荷叶和壁虎脚掌的性能。这种特殊的润湿性对于微流控装置中的液体微输运具有重要意义。实验结果表明,普通的涂覆工艺是制备超疏水表面的一种简便方法。

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