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Electrochemical growth and charge-transport properties of polyaniline/poly(styrenesulfonate) composite films

机译:聚苯胺/聚(苯乙烯磺酸盐)复合薄膜的电化学生长和电荷输运性质

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摘要

The kinetic parameters of charge transport in composite-modified electrodes were measured as a function of the electrode potential, film thickness, solution pH, and counter ion composition by electrochemical impedance spectroscopy. The impedance characteristics of composite films were analyzed on the basis of the diffusion-migration transport of both holes and protons in the film. Incorporation of the polyanion with the host matrix produced a more compact deposite. A slow growth of the composite film during electropolymerization was ascribed mainly to its low electronic conductivity caused by poor contacts among polyaniline chains. Poly(styrenesulfonic acid) lowered the coupled diffusion coefficient of the charge carriers by a factor of ten. The relationships between the kinetic parameters and the oxidation and protonation levels of polyaniline suggested that the rate of charge transport through the composite film was controlled by electron transport, which occurred probably via interchain electron hopping.
机译:通过电化学阻抗谱法测量了复合修饰电极中电荷传输的动力学参数与电极电势,膜厚度,溶液pH值和抗衡离子组成的关系。基于薄膜中空穴和质子的扩散迁移迁移,分析了复合薄膜的阻抗特性。聚阴离子与主体基质的结合产生了更致密的沉积物。复合膜在电聚合过程中的缓慢生长主要归因于聚苯胺链之间不良接触导致的低电子电导率。聚(苯乙烯磺酸)将电荷载流子的耦合扩散系数降低了十倍。动力学参数与聚苯胺的氧化和质子化水平之间的关系表明,通过复合膜的电荷传输速率受电子传输控制,而电子传输可能是通过链间电子跳跃而发生的。

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