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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effect of superhydrophobicity on the barrier properties of polymethylene films
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Effect of superhydrophobicity on the barrier properties of polymethylene films

机译:超疏水性对聚丙烯薄膜阻隔性能的影响

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摘要

Superhydrophobic polymethylene (PM) films provide remarkable protection against the transport of aqueous redox probes as a result of entrapped air at the water/polymer interface. The wetting properties and the topography for a set of superhydrophobic (SH) and nonsuperhydrophobic (NSH) PM films were established to compare their interfacial behavior using electrochemical impedance spectroscopy (EIS). EIS results show that SH PM films exhibit resistances against ion transfer that are~3 orders of magnitude higher than those of NSHPMfilms. Rationalization of these results in the context of the Helmholtz theory reveals that the imaginary impedance or inverse capacitance of SH PM films exhibits positive deviations from that predicted by Helmholtz theory for smooth PM films. Here, we model the capacitance behavior of a SH film as a PM/air composite that acts as a circuit of capacitors. The resulting mathematical model of this analysis enables correlation of the effective dielectric properties of the film (d_(effective), ε _(effective)) to measurable properties such as thickness (dfilm) and the dielectric constant (ePM) of the PM film. Finally, a sensitivity analysis shows that the limited contact area between the aqueous solution and PM in SH films is the primary reason for the enhancement in the barrier properties of the film.
机译:由于疏水性空气/水/聚合物界面的截留,超疏水性聚亚甲基(PM)膜可提供出色的保护,以防止水性氧化还原探针的运输。建立了一组超疏水(SH)和非超疏水(NSH)PM膜的润湿特性和形貌,以使用电化学阻抗谱(EIS)比较它们的界面行为。 EIS结果表明,SH PM膜的抗离子迁移能力比NSHPM膜高约3个数量级。在亥姆霍兹理论的背景下,这些结果的合理化表明,SH PM薄膜的虚阻抗或反电容与光滑薄膜的Helmholtz理论所预测的阻抗或正电容存在正偏差。在这里,我们将SH膜的电容行为建模为充当电容器电路的PM /空气复合物。通过该分析得出的数学模型可以使薄膜的有效介电特性(d_(有效),ε_(有效))与可测量的特性(例如,PM薄膜的厚度(dfilm)和介电常数(ePM))相关。最后,敏感性分析表明,SH膜中水溶液与PM之间有限的接触面积是增强膜阻隔性能的主要原因。

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