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通过含有羧酸和长烷基链的 EDOT 衍生物的电共聚制备 pH 和电压可切换的超疏水表面。

pH- and voltage-switchable superhydrophobic surfaces by electro-copolymerization of EDOT derivatives containing carboxylic acids and long alkyl chains.

机构信息

Groupe Surfaces et Interfaces, Laboratoire Physique de la Matière Condensée (LPMC), Université de Nice-Sophia Antipolis & CNRS, Nice, France.

出版信息

Chemphyschem. 2013 Aug 5;14(11):2529-33. doi: 10.1002/cphc.201300283. Epub 2013 May 29.

Abstract

In order to produce pH- and voltage-switchable superhydrophobic surfaces, PEDOT derivatives containing various proportions of a EDOT monomer containing carboxylic groups (EDOT-COOH) and EDOT monomer-containing dodecyl chains (EDOT-O-H12) are elaborated. The surface morphology and roughness depend highly on the proportion of the monomers. Superhydrophobic properties are reached for a mol% of EDOT-COOH between 0 and 25%. It is possible to switch from superhydrophobic to hydrophilic (θ(water) until about 45°) by electrochemical reduction at low voltage (-1 V vs SCE) to remove the doping anions, following by treatment with NaOH to change the carboxylic groups into carboxylate. By elaborating smooth surfaces of each polymer, the effect of each treatment is reported. The reversibility of the reactions is also reported.

摘要

为了制备具有 pH 和电压双重响应的超疏水表面,我们精心设计了含有不同比例羧酸基团(EDOT-COOH)和十二烷基链(EDOT-O-H12)的 EDOT 单体的 PEDOT 衍生物。表面形貌和粗糙度高度依赖于单体的比例。当 EDOT-COOH 的摩尔百分比在 0 到 25%之间时,超疏水性就可以达到。通过在低电压(-1 V 对 SCE)下电化学还原,去除掺杂阴离子,然后用 NaOH 处理将羧酸基团转化为羧酸盐,就可以将超疏水表面切换到亲水状态(θ(water) 直至约 45°)。通过对每种聚合物的光滑表面进行处理,我们报告了每种处理的效果。还报告了反应的可逆性。

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