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Charge Storage Capacity of Renewable Biopolymer/Conjugated Polymer Interpenetrating Networks Enhanced by Electroactive Dopants

机译:电活性掺杂剂增强可再生生物聚合物/共轭聚合物互穿网络的电荷存储能力

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摘要

Renewable materials are requested for large scale electrical storage, a coming necessity with the growth of intermittent solar and wind renewable electricity generation. Biopolymers are a source of inexpensive materials, in particular through the use of black liquor from paper production, a waste product. Interpenetrating networks of the biopolymer lignosulfonate (Lig) and conjugated polymer polypyrrole (Ppy) are synthesized by galvanostatic polymerization from pyrrole/lignosulfonate mixture in acidic aqueous electrolyte. Methoxy and phenolic functional group present in the non-conducting lignosulfonate are converted to quinone groups. The redox chemistry of quinones is used for charge storage, along with charge storage in polypyrrole. A large variation of the electrochemical activity between lignosulfonates obtained from different sources is observed. The charge storage capacities are significantly enhanced by also including another electroactive dopant, anthraquinone sulfonate (AQS). AQS redox peaks act as an internal reference (standard) to probe the redox electrochemistry of Lig. The synthesized Ppy(Lig) and Ppy(Lig-AQS) electrodes are characterized by cyclic voltammetry, galvanostatic charge-discharge cycling, electrochemical quartz crystal microbalance, and atomic force microscopy.
机译:大规模储电需要可再生材料,随着间歇性太阳能和风能可再生发电量的增长,这成为必需。生物聚合物是廉价材料的来源,特别是通过使用造纸产生的黑液(一种废品)。通过吡咯/木质素磺酸盐混合物在酸性水溶液中通过恒电流聚合法合成生物聚合物木质素磺酸盐(Lig)和共轭聚合物聚吡咯(Ppy)的互穿网络。存在于不导电木质素磺酸盐中的甲氧基和酚官能团被转化为醌基团。醌的氧化还原化学用于电荷存储以及聚吡咯中的电荷存储。观察到从不同来源获得的木质素磺酸盐之间的电化学活性有很大的变化。通过还包含另一种电活性掺杂剂蒽醌磺酸盐(AQS),大大提高了电荷存储容量。 AQS氧化还原峰充当内部参考(标准),用于探测Lig的氧化还原电化学。合成的Ppy(Lig)和Ppy(Lig-AQS)电极通过循环伏安法,恒电流充放电循环,电化学石英晶体微量天平和原子力显微镜表征。

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