超级电容器用高导电性PEDOT: PSS-PAs的合成与表征

Long Shen, Y. Kim, Dong-Ju Lee, Tae‐Dong Kim
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引用次数: 0

摘要

近年来,人们正在积极开展PEDOT:PSS的分子工程研究,以提高其电导率和器件性能。在本文中,我们制备并表征了一系列被烷基磺酸取代的PSS (PSS-co- pa3, PSS-co- pa5, PSS-co- pa10和PSS-co- pa30),并进一步制备了具有不同数量烷基磺酸官能团的PEDOT:PSS/氧化石墨烯(GO)气凝胶,该气凝胶可用于超级电容器电极。在PSS中引入烷基磺酸基可以提高其溶解度,因为烷基磺酸基具有柔性。与Clevios 4083/rGO电极相比,使用PEDOT:PSS-co-PA30/rGO电极的超级电容器在5000次循环后的循环稳定性(88%)提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis and Characterization of PEDOT: PSS-PAs with Good Electrical Conductivity for Supercapacitor
Recently, researches on molecular engineering of PEDOT:PSS is being actively conducted to improve the electrical conductivity and device performance. In this paper, we prepared and characterized a series of PSS substituted with alkyl sulfonate (PSS-co-PA3, PSS-co-PA5, PSS-co-PA10, and PSS-co-PA30) proceeding to prepare PEDOT:PSS/graphene oxide (GO) aerogels with different amounts of alkyl sulfonate functional groups that could be applied to supercapacitor electrodes. The introduction of alkyl sulfonate groups in PSS can enhance its solubility due to the flexible alkyl sulfonate groups. The cycle stability of supercapacitors using PEDOT:PSS-co-PA30/rGO electrode (88%) was improved compared to that of Clevios 4083/rGO electrode (53%) after 5000 cycles.
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