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Effect of supercritical CO2 on fabrication of free-standing hierarchical graphene oxide/carbon nanofiber/polypyrrole film and its electrochemical property

机译:超临界CO2对独立的分层氧化石墨烯/碳纳米纤维/聚吡咯膜制备及其电化学性能的影响

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摘要

In this paper, supercritical carbon dioxide (SC CO2) was first reported to help prepare unique flexible free-standing graphene oxideanofiber (GC) films. A novel hierarchical superior electrode material with polypyrrole (PPy) deposited on GO/CNF-SC (GC-SC) films was prepared via an in situ polymerization process. Our experimental results indicate that SC CO2 can not only enlarge the space between GO sheets but also improve the conductivity of the films. The electrochemical measurements show that the as-obtained PPy-coated GC-SC products display remarkably higher capacitive properties than pristine GC/PPy products as electrode materials. Excellent rate performance and stable capacitance retention (89% after 5000 cycles) were observed during the continuous charge-discharge cycles, which verify that SC CO2 provides a convenient route to the scalable production of hierarchical GO/CNF/PPy films for potential application in supercapacitors.
机译:本文首次报道了超临界二氧化碳(SC CO2),以帮助制备独特的柔性自支撑氧化石墨烯/纳米纤维(GC)薄膜。通过原位聚合工艺制备了一种新型的多层聚吡咯(PPy)沉积在GO / CNF-SC(GC-SC)薄膜上的高级电极材料。我们的实验结果表明,SC CO2不仅可以扩大GO板之间的空间,而且可以提高薄膜的电导率。电化学测量表明,与作为电极材料的原始GC / PPy产品相比,如此获得的PPy涂层GC-SC产品显示出明显更高的电容性能。在连续的充放电循环中观察到了出色的速率性能和稳定的电容保持率(5000次循环后为89%),这证明SC CO2为大规模生产GO / CNF / PPy膜提供了便利的途径,可用于超级电容器。

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