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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Roughened gold electrode for in situ SERS analysis of structural changes accompanying the doping process of polyaniline in acidic aqueous media
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Roughened gold electrode for in situ SERS analysis of structural changes accompanying the doping process of polyaniline in acidic aqueous media

机译:粗糙的金电极用于原位SERS分析结构变化的结构变化伴有酸性水性介质中聚苯胺的掺杂过程

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摘要

Electropolymerization of aniline on suitably roughened gold electrodes enabled us to record in situ surface-enhanced Raman scattering (SERS) spectra of polyaniline (PAni) during the doping-undoping process. Indeed, SERS-activation pretreatment of gold working electrode, using a specific electrochemical oxidation-reduction procedure, leads to the formation of countless surface asperities. The intergranular sites, known as "hot spots", thus generated by the surface roughness are the seat of a strong electromagnetic coupling which leads to a huge SERS effect. Contrary to the case of platinum or mirror-polished gold electrodes, the use of roughened gold leads to high quality in situ SERS spectra of PAni, allowing the observation of important changes in the spectral features of its different oxidation states. In this study, we relied on spectral decomposition procedures to monitor and try to quantify these transformations accompanying the variation in the oxidation state of the polymer in different acidic aqueous solutions. In particular, the transition between the different forms of PAni (leucoemeraldine emeraldine pernigraniline), the drastic passage from benzenoid to quinoid structures of some aniline nuclei and the evolution of the charge-carrying structural defects are investigated despite the limitations imposed by the challenging conditions of the in situ analysis.
机译:苯胺在适当粗糙的金电极上的电聚合使我们能够在掺杂解除过程中原位记录聚苯胺(PAni)的表面增强拉曼散射(SERS)光谱。事实上,使用特定的电化学氧化还原程序对金工作电极进行SERS活化预处理,会导致无数表面粗糙度的形成。由表面粗糙度产生的晶间位置被称为“热点”,是强电磁耦合的所在地,从而导致巨大的SERS效应。与铂或镜面抛光金电极的情况相反,使用粗糙金可以获得高质量的聚苯胺原位SERS光谱,从而可以观察其不同氧化状态光谱特征的重要变化。在这项研究中,我们依靠光谱分解程序来监测并试图量化这些转化,以及聚合物在不同酸性水溶液中氧化状态的变化。特别是,尽管原位分析的挑战性条件施加了限制,但仍研究了不同形式的PAni(亮绿宝石绿宝石-翡翠-pernigraniline)之间的过渡、一些苯胺核从苯类结构到醌类结构的剧烈过渡以及荷电结构缺陷的演化。

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