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Enhancement of the Electrochemical Performance of SWCNT dispersed in a Silica Sol-gel Matrix by Reactive Insertion of a Conducting Polymer

机译:通过导电聚合物的反应插入增强分散在二氧化硅溶胶-凝胶基质中的SWCNT的电化学性能

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摘要

The electroassisted encapsulation of Single-Walled Carbon Nanotubes was performed into silica matrices (SWCNT@SiO2). This material was used as the host for the potentiostatic growth of polyaniline (PANI) to yield a hybrid nanocomposite electrode, which was then characterized by both electrochemical and imaging techniques. The electrochemical properties of the SWCNT@SiO2-PANI composite material were tested against inorganic (Fe3+/Fe2+) and organic (dopamine) redox probes. It was observed that the electron transfer constants for the electrochemical reactions increased significantly when a dispersion of either SWCNT or PANI was carried out inside of the SiO2 matrix. However, the best results were obtained when polyaniline was grown through the pores of the SWCNT@SiO2 material. The enhanced reversibility of the redox reactions was ascribed to the synergy between the two electrocatalytic components (SWCNTs and PANI) of the composite material.
机译:将单壁碳纳米管电辅助封装到二氧化硅基质(SWCNT @ SiO2)中。该材料用作聚苯胺(PANI)恒电位生长的基质,以产生杂化纳米复合电极,然后通过电化学和成像技术对其进行表征。针对无机(Fe3 + / Fe2 +)和有机(多巴胺)氧化还原探针测试了SWCNT @ SiO2-PANI复合材料的电化学性能。观察到,当在SiO 2基体内部进行SWCNT或PANI的分散时,用于电化学反应的电子转移常数显着增加。但是,当聚苯胺通过SWCNT @ SiO2材料的孔生长时,可获得最佳结果。氧化还原反应的可逆性增强归因于复合材料的两种电催化组分(SWCNT和PANI)之间的协同作用。

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