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Preparation and Electrochemical Properties of Porous Carbon Nanofiber Electrodes Derived from New Precursor Polymer: 6FDA-TFMB

机译:新型前体聚合物衍生的多孔碳纳米纤维电极的制备及电化学性能:6FDA-TFMB

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摘要

Porous carbon nanofibers (CNFs) with high energy storage performance were fabricated with a single precursor polymer, 6FDA-TFMB, without the use of any pore-generating materials. 6FDA-TFMB was synthesized, electrospun, and thermally treated to produce binder-free CNF electrodes for electrochemical double-layer capacitors (EDLCs). Highly porous CNFs with a surface area of 2213 m g were prepared by steam-activation. CNFs derived from 6FDA-TFMB showed rectangular cyclic voltammograms with a specific capacitance of 292.3 F g at 10 mV s . It was also seen that CNFs exhibit a maximum energy density of 13.1 Wh kg at 0.5 A g and power density of 1.7 kW kg at 5 A g , which is significantly higher than those from the common precursor polymer, polyacrylonitrile (PAN).
机译:具有高能储存性能的多孔碳纳米纤维(CNFS)用单一前体聚合物,6FDA-TFMB制造,不使用任何孔发电材料。合成6FDA-TFMB,电纺,热处理,以产生用于电化学双层电容器(EDLC)的无粘合剂CNF电极。通过蒸汽活化制备具有表面积为2213μm的高度多孔CNF。来自6FDA-TFMB的CNFS显示矩形循环伏型图,其特定电容为292.3Fg,10mV S。还观察室还可以看出,CNFS在0.5Ag的最大能量密度为13.1Whkg,功率密度为1.7kg kg,5 a g显着高于普通前体聚合物,聚丙烯腈(盘)。

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