首页> 美国卫生研究院文献>ACS Omega >Surface Nanostructuration and Wettability of Electrodeposited Poly(34-ethylenedioxypyrrole)and Poly(34-propylenedioxypyrrole) Films Substituted by AromaticGroups
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Surface Nanostructuration and Wettability of Electrodeposited Poly(34-ethylenedioxypyrrole)and Poly(34-propylenedioxypyrrole) Films Substituted by AromaticGroups

机译:电沉积聚(34-乙撑二氧基吡咯)的表面纳米结构和润湿性和芳香族取代的聚(34-丙烯二氧基吡咯)薄膜团体

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摘要

In the aim to obtain parahydrophobic materials (both high contact angles and high hysteresis) for possible applications in water harvesting systems, we report the synthesis of novel 3,4-ethylenedioxypyrrole (EDOP) and 3,4-propylenedioxypyrrole (ProDOP) monomers with aromatic rings on the 3,4-alkylenedioxy bridge and the resulting conducting polymer films were prepared by electropolymerization. We show that the surface properties can be tuned by the nature of the aromatic ring (phenyl, biphenyl, diphenyl, naphthalene, fluorene, and pyrene) and the polymerizable core (EDOP or ProDOP). The best results are obtained with both EDOP and diphenyl, with which extremely high hydrophobic properties (up to 116°) are obtained, even if the polymers are intrinsically hydrophilic. These surfaces could be applied in the future, for example, in water harvesting systems or in water/oil separation membranes. The synthesis strategy is extremely interesting, and many other molecules will be envisaged in the future.
机译:为了获得对疏水性材料(高接触角和高滞后性)以用于集水系统,我们报告了新型3,4-乙二氧基吡咯(EDOP)和3,4-丙二氧基吡咯(ProDOP)单体与芳烃的合成通过电聚合制备3,4-亚烷基二氧基桥上的环和所得的导电聚合物膜。我们表明,可以通过芳香环(苯基,联苯,联苯,萘,芴和pyr)和可聚合核(EDOP或ProDOP)的性质来调节表面性能。 EDOP和联苯均能获得最佳结果,即使聚合物本身具有亲水性,也能获得极高的疏水性(最高达116°)。这些表面可在将来应用于例如集水系统或水/油分离膜中。合成策略非常有趣,将来还会设想许多其他分子。

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