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一锅法电化学聚合全氟烷基烷基吡咯制备耐酸堿粘性超疏水表面

Acids and alkali resistant sticky superhydrophobic surfaces by one-pot electropolymerization of perfluoroalkyl alkyl pyrrole.

机构信息

Institut de Chimie de Nice, FR 3037, Laboratoire de Chimie des Matériaux Organiques et Métalliques, EA 3155, Université de Nice-Sophia Antipolis, Parc Valrose, 06108 Nice cedex 2, France.

出版信息

J Colloid Interface Sci. 2010 Mar 15;343(2):608-14. doi: 10.1016/j.jcis.2009.11.052. Epub 2009 Nov 26.

Abstract

Over the past few years, electropolymerization of semifluorinated monomers like thiophene or pyrrole has been used as a gentle and effective method to generate, in one step, stable superhydrophobic surfaces. The synthetic route mostly involves the coupling reaction between a carboxylic acid and an alcohol, using a carboxy group-activated reagent and a catalyst. As a consequence, the electroformed surfaces present high liquid repellency due to the concomitant effect of roughness and low surface energy. Nevertheless, the ester connector can be cleaved under acidic and basic conditions, preventing its use under a range of environmental conditions. To overcome this drawback, a new perfluoroalkyl alkyl pyrrole has been synthesized, the fluorinated segment being connected to the electropolymerizable part via an alkyl chain, and electropolymerized, leading to surfaces that exhibit a static contact angle with water superior to 150 degrees and no sliding angle, over a wide pH range and with a long lifetime. This represents the first example of a pure conducting polymer surface with sticky superhydrophobicity not only in pure water but also in corrosive solutions such as acids and bases, giving rise to new prospects in practical applications.

摘要

在过去的几年中,噻吩或吡咯等半氟化单体的电化学聚合已被用作一种温和而有效的方法,可一步生成稳定的超疏水表面。该合成路线主要涉及羧酸和醇之间的偶联反应,使用羧基活化试剂和催化剂。因此,由于粗糙度和低表面能的共同作用,电成型表面具有高的抗液体润湿性。然而,酯连接器在酸性和碱性条件下会被切断,这限制了其在一系列环境条件下的使用。为了克服这一缺点,已经合成了一种新的全氟烷基烷基吡咯,氟烷基段通过烷基链连接到可电化学聚合部分,并进行电化学聚合,得到的表面在很宽的 pH 值范围内具有静态接触角大于 150 度且无滑动角,且具有较长的使用寿命。这代表了具有粘性超疏水性的纯导电聚合物表面的第一个例子,不仅在纯水中,而且在酸和碱等腐蚀性溶液中也是如此,为实际应用带来了新的前景。

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