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首页> 外文期刊>Electrochimica Acta >Correlation between ion-exchange properties and swelling/shrinking processes in hexasulfonated calix[6]arene doped polypyrrole films: ac-electrogravimetry and electrochemical atomic force microscopy investigations
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Correlation between ion-exchange properties and swelling/shrinking processes in hexasulfonated calix[6]arene doped polypyrrole films: ac-electrogravimetry and electrochemical atomic force microscopy investigations

机译:六磺化杯[6]芳烃掺杂的聚吡咯膜中离子交换性质与溶胀/收缩过程的相关性:交流电法和电化学原子力显微镜研究

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摘要

Electrogenerated polypyrrole films doped with hexasulfonated calix[6]arenes were subjected to acelectrogravimetry and electrochemical atomic force microscopy (EC-AFM) studies in aqueous potassium nitrate solutions. The former technique reveals that these films are mainly cation exchangers although solvent molecules (H_2O) and anions (NO_3~-) are also exchanged, in much lower amounts, in the course of the doping/undoping process. Unexpectedly, within the potential range encompassing this process, K~+ cations were found to be exchanged for more cathodic potentials whereas H_3O~+ are exchanged for more anodic potentials. EC-AFM investigations revealed substantial shrinking and swelling during the oxidation (doping) and reduction (undoping) processes respectively. An obvious correlation can easily be built between these observations: the oxidation of the polymer films provokes an expulsion of the cations, as expected from cation exchanger polymer films, and therefore a decrease of the volume (and thickness) of these films whereas their reduction causes an insertion of cations and an increase of their volume (and thickness). This electromechanical mechanism is amplified by the simultaneous exchange of free water molecules. Suggestions based on these observations, on structural characteristics of polypyrrole films, and on complexation ability of hexasulfonated calix[6]arenes incorporated in the films are discussed to explain (i) the change of the identity of the exchanged cations as a function of the potential, (ii) the exchange of free water molecules and, (iii) the exchange of small amounts of nitrate ions.
机译:在硝酸钾水溶液中对掺有六磺化杯[6]芳烃的电生成的聚吡咯薄膜进行了电重分析和电化学原子力显微镜(EC-AFM)研究。前一种技术揭示了这些膜主要是阳离子交换剂,尽管在掺杂/去掺杂过程中溶剂分子(H_2O)和阴离子(NO_3--)也以低得多的量交换。出乎意料的是,在涵盖该过程的电势范围内,发现K〜+阳离子交换了更多的阴极电势,而H_3O〜+被交换了更多的阳极电势。 EC-AFM的调查表明,在氧化(掺杂)和还原(未掺杂)过程中,分别出现了明显的收缩和溶胀。在这些观察值之间可以很容易地建立明显的相关性:聚合物膜的氧化引起阳离子的驱逐,正如阳离子交换剂聚合物膜所期望的那样,因此这些膜的体积(和厚度)减小,而它们的还原引起插入阳离子并增加其体积(和厚度)。机电机制通过自由水分子的同时交换而放大。基于这些观察结果,关于聚吡咯薄膜的结构特征以及掺入薄膜中的六磺化杯[6]芳烃的络合能力的建议,被讨论以解释(i)交换阳离子的身份随电位的变化。 ;(ii)交换自由水分子,以及(iii)交换少量硝酸根离子。

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