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Multistage redox reactions of conductive-polymer nanostructures with lithium ions: potential for high-performance organic anodes

机译:导电聚合物纳米结构与锂离子的多级氧化还原反应:高性能有机阳极的潜力

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Conducive polymers have a wide range of applications originating from their -conjugated systems. The redox reactions of conductive polymers with doping and dedoping of anions have been applied to cathodes for charge storage. In contrast, the redox reactions with cations have not been fully studied in anodes for charge storage. Here, we found that the nanostructures of conductive polymers, such as polypyrrole (PPy) and polythiophene (PTp) derivatives, have reversible redox reactions with cations. The PPy and PTp nanostructures acted as anodes with specific capacities of 157 and 44.4umAuhug-1, respectively, at a current density of 20umAug-1. The introduction of a carboxy group to the pyrrole and thiophene rings enhanced the specific capacities up to 730 and 963umAhug-1, respectively. The enhanced electrochemical properties were not observed in the bulk-size conductive polymers. The results suggest that conductive-polymer nanostructures have potential for developing metal-free, high-performance charge storage devices.
机译:导电聚合物由于其共轭体系而具有广泛的应用。导电聚合物与阴离子的掺杂和去掺杂的氧化还原反应已应用于阴极进行电荷存储。相反,在阳极中用于电荷存储的与阳离子的氧化还原反应尚未得到充分研究。在这里,我们发现导电聚合物的纳米结构,例如聚吡咯(PPy)和聚噻吩(PTp)衍生物,具有与阳离子可逆的氧化还原反应。 PPy和PTp纳米结构分别以157和44.4umAuhug-1的比容量充当阳极,电流密度为20umAug-1。在吡咯和噻吩环上引入羧基可将比容量分别提高至730和963umAhug-1。在本体导电聚合物中未观察到增强的电化学性能。结果表明,导电聚合物纳米结构具有开发无金属,高性能电荷存储器件的潜力。

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