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Hybrid elastomer-nanotube matrix for hydrophobic surface functionalization

机译:疏水表面功能化的混合弹性体-纳米管基质

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摘要

Surface functionalization studies for re-creating a 'Lotus Leaf' effect (super-hydrophobic) have been carried out for the past few decades, looking for the material which can provide high transparency, low energy surface, and high surface roughness. However, the conventional fabrication processes of super-hydrophobic surface proposed by the previous researchers were reported to be complicated. Therefore, in this research, we had created an alternative ways to produce near-super-hydrophobic surfaces using simplest processing routes with a controlled modification. The fabrication of polydimethylsiloxane/multi-walled carbon nanotubes (MWCNTs) hybrid thin film matrix on glass to produce near-super-hydrophobic surfaces is presented in this paper. There are three important parameters studied in producing hydrophobic surfaces based on the hybrid thin films; concentration of polydimethylsiloxane, concentration of MWCNTs, and droplet sizes, respectively. The study is carried out using polydimethylsiloxane of varied cross linker ratio (10:1, 30:1, and 50:1) with MWCNTs concentration of 1, 10, and 15mg for 0.5, 2.0, 5.0, and 10 mu l droplet sizes. The resulting hybrid elastomer-nanotube matrix thin films show that hydrophobicity increased with increasing cross linker ratio and MWCNTs percentage in the polydimethylsiloxane solution. A near-super-hydrophobic surface can be created when using 15mg of MWCNTs with 50:1 cross linker ratio polydimethylsiloxane thin films, measured on 10 mu l droplet size. The hybrid thin films produced can be potentially tailored to the application of biosensors, MEMS, and even commercial devices.
机译:在过去的几十年中,已经进行了表面功能化研究,以重现“荷叶”效果(超疏水性),寻找可提供高透明度,低能量表面和高表面粗糙度的材料。然而,据报道,以前的研究人员提出的超疏水表面的常规制造工艺是复杂的。因此,在这项研究中,我们创建了一种替代方法,即使用具有受控修饰的最简单的加工路线来生产接近超疏水的表面。本文介绍了在玻璃上制备聚二甲基硅氧烷/多壁碳纳米管(MWCNTs)混合薄膜基质以产生近超疏水表面的方法。研究了基于杂化薄膜生产疏水表面的三个重要参数;聚二甲基硅氧烷的浓度,MWCNT的浓度和液滴尺寸。该研究使用交联剂比率(10:1、30:1和50:1)变化的聚二甲基硅氧烷进行,MWCNTs浓度分别为1、10和15mg,液滴尺寸分别为0.5、2.0、5.0和10μl。所得的混合弹性体-纳米管基质薄膜显示,疏水性随着聚二甲基硅氧烷溶液中交联剂比率和MWCNTs百分比的增加而增加。当使用15毫克具有50:1交联剂比率的聚二甲基硅氧烷薄膜的MWCNT(按10微升液滴尺寸测量)时,可以产生近乎疏水的表面。所生产的混合薄膜可以潜在地适合生物传感器,MEMS甚至商业设备的应用。

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