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Fabrication of Superhydrophobic Surfaces by Electropolymerization of Thiophene and Pyrrole Derivatives

机译:噻吩和吡咯衍生物的电聚合制备超疏水表面

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摘要

The electropolymerization of five-membered heterocycles like thiophene and pyrrole leads to the deposition of conductive and morphology-controlled films onto different kinds of electrodes. It involves many experimental parameters such as the chemical nature and concentration of the monomer and electrolyte, the solvent, the nature of electrode, the applied electrical conditions and the time considered. These elec-trosynthesis conditions determine to a large extent the structure, morphology and properties of the resulting polymer. By controlling them, it represents a straightforward method to obtain highly porous surfaces. The use of low surface energy alkyl or perfluoroalkyl chains together with the electropolymerization process allows the control of the two parameters that generally govern the wettability of a surface, i.e. the chemical composition and the microstructure of the surface, and affords an excellent method to reach very stable superhydrophobic surfaces with a low contact angle hysteresis.
机译:五元杂环(例如噻吩和吡咯)的电聚合导致导电和形态控制薄膜沉积到不同种类的电极上。它涉及许多实验参数,例如单体和电解质的化学性质和浓度,溶剂,电极的性质,施加的电条件和所考虑的时间。这些电合成条件在很大程度上决定了所得聚合物的结构,形态和性能。通过控制它们,它代表了获得高度多孔表面的直接方法。使用低表面能的烷基或全氟烷基链以及电聚合过程可以控制通常控制表面润湿性的两个参数,即表面的化学组成和微观结构,并提供了一种出色的方法来达到具有低接触角滞后的稳定超疏水表面。

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