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首页> 外文期刊>Macromolecular chemistry and physics >Tunable Surface Nanoporosity by Electropolymerization of N -Alkyl-3,4-ethylenedioxypyrroles With Different Alkyl Chain Lengths
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Tunable Surface Nanoporosity by Electropolymerization of N -Alkyl-3,4-ethylenedioxypyrroles With Different Alkyl Chain Lengths

机译:通过电聚合不同烷基链长度的N-烷基-3,4-乙撑二氧吡咯可调节的表面纳米孔隙度

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The tuning of the surface morphology is crucial in the development of superhydrophobic surfaces with various wetting properties. Here, we report the synthesis and electrodeposition of poly(3,4-ethylenedioxypyrrole) (PEDOP) derivatives containing hydrocarbon chains (ethyl to tetradecyl). Surprisingly, the alkyl chain length has a very important infl uence on the surface morphology and as a consequence on the water-repellency properties. The amount of the nanoporosity and the water-repellency properties can be controlled with alkyl chain length. Moreover, it seems the presence of surface nanoporosity is in correlation with the steric hindrances induced by the alkyl chains during the electrodeposition. This paper uses bioinspired approaches (fl uorocarbon free) to reach superhydrophobic surfaces.
机译:表面形态的调整对于具有各种润湿特性的超疏水表面的开发至关重要。在这里,我们报告含有烃链(乙基到十四烷基)的聚(3,4-乙撑二氧基吡咯)(PEDOP)衍生物的合成和电沉积。出人意料的是,烷基链长对表面形态具有非常重要的影响,并因此对疏水性具有影响。纳米孔隙度和疏水性的量可以通过烷基链长来控制。此外,表面纳米孔隙的存在似乎与电沉积过程中烷基链引起的位阻有关。本文采用生物启发的方法(不含氟化碳)达到超疏水表面。

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