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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Electrochemical synthesis of perfluorinated ion doped conducting polyaniline films consisting of helical fibers and their reversible switching between superhydrophobicity and superhydrophilicity
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Electrochemical synthesis of perfluorinated ion doped conducting polyaniline films consisting of helical fibers and their reversible switching between superhydrophobicity and superhydrophilicity

机译:螺旋纤维组成的全氟离子掺杂导电聚苯胺薄膜的电化学合成及其在超疏水性和超亲水性之间的可逆转换

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摘要

Superhydrophobic conducting polyaniline (PAni) films were electrochemically deposited in acetonitrile-H2O electrolyte containing aniline monomer and perfluorooctanesulfonic (PFOS) acid. The films exhibited an extended network structure composed of helical PAni sub-micron fibers. The helical fibrous structure is thought to form through a supermolecular templating process. The surface of the PFOS-doped PAni films showed a water contact angle of 153 degrees. Reducing the PFOS-doped PAni (in emeraldine salt form) by negative potential led to de-doped PAni films (in leucoemeraldine base form) which were superhydrophilic (water contact angle close to 0 degrees). By controlling the electrical potential, PAni films were changed between the doped state and de-doped state, resulting in reversibly switchable superhydrophobic and superhydrophilic surfaces.
机译:将超疏水导电聚苯胺(PAni)膜电化学沉积在含有苯胺单体和全氟辛烷磺酸(PFOS)的乙腈-H2O电解质中。薄膜显示出由螺旋PAni亚微米纤维组成的扩展网络结构。认为螺旋纤维结构是通过超分子模板过程形成的。掺杂PFOS的PAni膜的表面显示出153度的水接触角。通过负电势还原掺杂PFOS的PAni(呈翡翠盐形式)导致去掺杂的PAni膜(呈隐色翡翠碱形式)具有超亲水性(水接触角接近0度)。通过控制电势,PAni膜在掺杂状态和去掺杂状态之间变化,从而产生可逆切换的超疏水和超亲水表面。

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