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Electroactivity of 3D conducting polymers in water-in-salt electrolyte and their electrochemical capacitor performance

机译:3D导电聚合物在水 - 盐电解质中的电分子及其电化学电容性能

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摘要

Electrochemical capacitors show high power density but suffer from low energy density. The use of pseudocapacitive material can increase the cell capacitance and therefore increase the device energy density. In this work, we show that using microtubular conducting polymers, as polypyrrole (PPy) and poly(3,4-ethylenedioxythiophene) (PEDOT), alongside activated carbon (AC) in asymmetrical devices, and highly concentrated aqueous electrolyte (or water-in-salt electrolyte, WiSE), is possible to maintain the polymers electroactivity at the negative polarization and take advantage of the electrolyte electrochemical stability. The polymers electrochemical behaviours were compared in WiSE and aqueous acidic solution, which hinted that the polymers charge compensation are different in the different electrolytes. PPy-AC and PEDOT-AC cells can reach 2.6 and 2.8?V, respectively, and electrodes mass balance greatly depends on the polymers open circuit potential before and after cycling.
机译:电化学电容器的功率密度高,但能量密度低。假电容材料的使用可以增加电池的电容,从而增加器件的能量密度。在这项工作中,我们展示了使用微管导电聚合物,如聚吡咯(PPy)和聚(3,4-亚乙基二氧噻吩)(PEDOT),以及不对称装置中的活性炭(AC)和高浓度水电解质(或盐电解质中的水,WiSE),可以将聚合物的电活性保持在负极化状态,并利用电解质的电化学稳定性。比较了聚合物在WiSE和酸性水溶液中的电化学行为,表明聚合物在不同电解质中的电荷补偿不同。PPy-AC和PEDOT-AC细胞可以达到2.6和2.8?五、 电极和电极的质量平衡在很大程度上取决于循环前后聚合物的开路电位。

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