吡咯基聚合物薄膜中的离子输运

Huanyu Mao, J. Ochmańska, C. Paulse, P. Pickup
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引用次数: 36

摘要

用单孔模型计时电流法测定了聚吡咯、聚-[1-甲基-3-(吡咯-1-基甲基)吡啶](聚- mpmp +)和吡咯-[Ru(2,2 ' -联吡啶)2(3-(吡咯-1-基甲基)吡啶)Cl]+共聚物薄膜的离子电阻率和反离子扩散系数。对于聚mpmp +,可以同时测定电子电阻率和离子电阻率。有限差分模拟证实了所用方程的有效性,并扩展了模型的适用性。用旋转盘伏安法和直流电导率法测定了聚吡咯和聚mpmp +中的反离子扩散系数。在可能的情况下,用两种独立的方法证实了结果。比较和讨论了I -、Cl -、ClO4 -和Fe(CN)64 -在上述聚合物中在水和/或乙腈中的扩散系数。结果表明:(a)聚吡咯和聚mpmp +在水中溶化和膨胀的程度远大于在乙腈中;(b)永久阳离子位增加了聚吡咯在水中的渗透性,但在乙腈中没有;(c)大体积金属配合物的掺入可以增加聚吡咯在乙腈中的渗透性。
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Ion transport in pyrrole-based polymer films
Ionic resistivities and counterion diffusion coefficients for polypyrrole, poly-[1-methyl-3-(pyrrol-1-ylmethyl)pyridinium](poly-MPMP+) and pyrrolex-[Ru(2,2′-bipyridine)2(3-(pyrrol-1-ylmethyl) pyridine)Cl]+ copolymer films have been obtained by chronoamperometry using the single-pore model. For poly-MPMP+ both the electronic resistivity and the ionic resistivity can be simultaneously determined. Finite-difference simulations have been used to confirm the validity of the equations used and to extend the applicability of the model.Counterion diffusion coefficients in polypyrrole and poly-MPMP+ have also been determined by rotating-disc voltammetry and d.c. conductivity measurements. Where possible the results have been confirmed by the use of two independent methods. Diffusion coefficients for I–, Cl–, ClO4– and Fe(CN)64– in the above polymers in water and/or acetonitrile are compared and discussed. It is concluded that: (a) polypyrrole and poly-MPMP+ are solvated and swollen to a much greater extent in water than in acetonitrile, (b) permanent cationic sites increase the permeability of polypyrrole in water but not in acetonitrile and (c) the permeability of polypyrrole in acetonitrile can be increased by the incorporation of bulky metal complexes.
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