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首页> 外文期刊>Journal of solid state electrochemistry >Polypyrrole on self-assembled monolayers of a pyrrolyl lipoic acid derivative-electrosynthesis and polymer film characterization
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Polypyrrole on self-assembled monolayers of a pyrrolyl lipoic acid derivative-electrosynthesis and polymer film characterization

机译:吡咯基硫辛酸衍生物自组装单分子膜上的聚吡咯-电合成和聚合物膜表征

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摘要

The electropolymerization of pyrrole on gold modified by a self-assembled monolayer (SAM) of a pyrrolyl lipoic acid derivative was investigated in detail and the results compared to those obtained on bare substrates. Both under potentiostatic and potentiodynamic control, a slight blocking action of the underlying SAM could be observed for the initial stages of polymer growth but thereafter the electrochemical features were similar to those collected for polypyrrole (PPy) deposition on bare gold. The morphology and structure of PPy films formed on the SAMs were characterized by atomic force microscopy and X-ray diffraction, which revealed that those polymer properties are much more influenced by the electrochemical mode of preparation, than by the underlying SAMs. While, when compared to PPy on bare gold, no effect has been detected on thin layers deposited at constant potential, surface areas with rather irregular morphology, as well as a small but beneficial influence in inducing order on the first few layers of the polymer film, have been observed on similar films formed by cyclic voltammetry. The typical globular morphology of PPy has always been observed for relatively thick layers in which the redox behavior, analyzed by in situ AFM, showed an increase in volume of the polymer nodules upon reduction, largely due to the SAM reorganization induced by the applied potential.
机译:详细研究了吡咯在由吡咯基硫辛酸衍生物的自组装单层(SAM)修饰的金上的电聚合,并将结果与​​在裸露基底上获得的结果进行了比较。在恒电位和恒电位控制下,在聚合物生长的初始阶段都可以观察到潜在的SAM的轻微阻滞作用,但是此后的电化学特征类似于在裸金上沉积的聚吡咯(PPy)的电化学特征。用原子力显微镜和X射线衍射对在SAM上形成的PPy膜的形貌和结构进行了表征,这表明与常规SAM相比,这些聚合物的性能受电化学制备方式的影响更大。虽然与裸金上的PPy相比,在以恒定电势沉积的薄层,具有相当不规则形貌的表面积以及对聚合物膜的前几层的诱导顺序产生小的但有益的影响上,未发现任何影响在通过循环伏安法形成的类似膜上已经观察到α,β,β。一直以来,对于相对较厚的层,通常观察到PPy的典型球状形态,其中通过原位AFM分析的氧化还原行为显示,还原后聚合物结核的体积增加,这主要归因于施加电势引起的SAM重组。

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