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Nucleoside surfaces as a platform for the control of surface hydrophobicity

机译:核苷表面作为控制表面疏水性的平台

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The control of the surface structures and surface energy of hydrophobic surfaces is extremely important for various potential applications. Here, we report for the first time the synthesis of 3,4-ethylenedioxythiophene (EDOT) derivatives with a nucleoside linker for surface post-functionalization using the Huisgen reaction. Various alkynes are used to graft alkyl, aryl or perfluoroalkyl chains. We show that it is possible to obtain both extremely high water contact angles ( θ _(water) > 130°) and extremely high water adhesion (parahydrophobic properties). The highest θ _(water) values are obtained with fluorinated compounds but also surprisingly with phenanthrene. The extremely important results obtained with phenanthrene are explained by a change in the surface morphology after post-functionalization from cauliflower-like structures to fibrous structures. These key results are the first step in the study of the effect of nucleosides on the construction of hydrophobic surfaces.
机译:对各种潜在应用的疏水表面的表面结构和表面能的控制非常重要。在这里,我们首次报告3,4-亚乙基氧噻吩(Edot)衍生物的合成使用Huisgen反应的表面后官能化的核苷接头。各种炔烃用于接枝烷基,芳基或全氟烷基链。我们表明可以获得极高的水接触角(θ_(水)> 130°)和极高的水附着力(普及型性能)。用氟化化合物获得最高θ_(水)值,但也令人惊讶地用菲苯乙烯。用菲丙烯获得的极其重要的结果是通过从花椰菜状结构后官能化后的表面形态的变化来解释。这些关键结果是研究核苷对疏水表面构建的影响的第一步。

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