首页> 美国卫生研究院文献>ACS Omega >Parahydrophobic and Nanostructured Poly(34-ethylenedioxypyrrole)and Poly(34-propylenedioxypyrrole) Films with Hyperbranched AlkylChains
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Parahydrophobic and Nanostructured Poly(34-ethylenedioxypyrrole)and Poly(34-propylenedioxypyrrole) Films with Hyperbranched AlkylChains

机译:超疏水和纳米结构的聚(34-乙撑二氧吡咯)和高支化烷基的聚(34-丙烯二氧基吡咯)薄膜链条

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摘要

Here, we control the surface hydrophobicity and the adhesion of water droplets by electrodeposition of poly(3,4-ethylenedioxypyrrole) (PEDOP) and poly(3,4-propylenedioxypyrrole) (PProDOP) with branched alkyl chains placed preferentially on the bridge to favor the formation of nanofibers. Branched alkyl chains of various sizes from very short (C3) to hyperbranched (C18) are studied because they have lower surface hydrophobicity than long alkyl or fluoroalkyl chains (preferable for parahydrophobic properties). The electrodeposition is much more favored with the PEDOP derivatives because the ProDOP films are more soluble. However, the formation of nanoparticles is favored with the PEDOP polymers in contrast to the formation of fibers, resembling the wax nanoclusters observed on lotus leaves, with the ProDOP polymers. With both these PEDOP and PProDOP derivatives, it is possible to reach parahydrophobic properties characterized by a sticking behavior toward water droplets. This kind of surfaces could be used in the future in water harvesting systems, for example.
机译:在这里,我们通过电沉积聚(3,4-亚乙二氧基吡咯)(PEDOP)和聚(3,4-亚丙二氧基吡咯)(PProDOP)的方法来控制表面疏水性和水滴的附着,支链烷基链优先放置在桥上,从而有利于纳米纤维的形成。研究了从非常短的(C3)到超支化(C18)的各种大小的支链烷基链,因为它们的表面疏水性比长链烷基或氟烷基链低(对于超疏水性质而言比较理想)。 PEDOP衍生物更有利于电沉积,因为ProDOP膜更易溶。但是,与纤维形成不同,PEDOP聚合物有利于纳米颗粒的形成,类似于ProDOP聚合物在荷叶上观察到的蜡纳米团簇。使用这些PEDOP和PProDOP衍生物,都可以达到以疏水特性为特点的对疏水性。例如,将来可以在集水系统中使用这种表面。

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