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Structuring unbreakable hydrophobic barriers in paper

机译:在纸上构建不可用的疏水障碍

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Hydrophobic barriers are one of the key elements of microfluidic paper based analytical devices (μPADs). μPADs are simple and cost efficient and they can be carried out without the need of high standard laboratories. To carry out such a test a method is needed to create stable hydrophobic barriers. Commonly used methods like printing wax or polystyrene have the major drawback that these barriers are stiff and break if bended which means they will no longer be able to retain a liquid sample. Here we present silanes to structure hydrophobic barriers via polycondensation and show a silanization method which combines the advantages of flexible silane/siloxane layers with the short processing times of UV-light based structuring. The barriers are created by using methoxy silanes which are mixed with a photo acid generator (PAG) as photoinitiator. Also a photosensitizer was given to the mixture to increase the effectiveness of the PAG. After the PAG is activated by UV-light the silane is hydrolyzed and coupled to the cellulose via polycondensation. The created hydrophobic barriers are highly stable and do not break if being bended.
机译:疏水性屏障是基于微流体纸的分析装置(μPAD)的关键要素之一。 μPADS是简单且成本高的,并且可以在没有高标准实验室的情况下进行。为了进行这种测试,需要一种方法来产生稳定的疏水屏障。常用的方法,如印刷蜡或聚苯乙烯,具有以下主要缺点,即这些屏障仍然存在僵硬和断裂,如果弯曲意味着它们不再能够保留液体样品。在这里,我们将硅酸硅通过缩聚构成疏水屏障,并显示硅烷/硅氧烷层的优点,硅烷/硅烷层的优点与紫外线的结构的短加工时间结合起来。通过使用与光酸发生器(PAG)混合为光引发剂的甲氧基硅烷来产生屏障。还给出了混合物的光敏剂以增加PAG的有效性。通过UV光激活PAG之后,通过缩聚来水解硅烷并与纤维素偶联。由于弯曲,所产生的疏水性障碍是高度稳定的,不会破裂。

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