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Structure And Electrochemical Properties Of Activated Polyacrylonitrile Based Carbon Fibers Containing Carbon Nanotubes

机译:含碳纳米管的活性聚丙烯腈基碳纤维的结构和电化学性能

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Solution spun polyacrylonitrile (PAN), PAN/multi-wall carbon nanotube (MWCNT), and PAN/single-wall carbon nanotube (SWCNT) fibers containing 5 wt.% carbon nanotubes were stabilized in air and activated using CO_2 and KOH. The surface area as determined by nitrogen gas adsorption was an order of magnitude higher for KOH activated fibers as compared to the CO_2 activated fibers. The specific capacitance of KOH activated PAN/SWCNT samples was as high as 250 F g~(-1) in 6 M KOH electrolyte. Under the comparable KOH activation conditions, PAN and PAN/SWCNT fibers had comparable surface areas (BET surface area about 2200 m~2 g~(-1)) with pore size predominantly in the range of 1-5 nm, while surface area of PAN/MWCNT samples was significantly lower (BET surface area 970 m~2 g~(-1)). The highest capacitance and energy density was obtained for PAN/SWCNT samples, suggesting SWCNT advantage in charge storage. The capacitance behavior of these electrodes has also been tested in ionic liquids, and the energy density in ionic liquid is about twice the value obtained using KOH electrolyte.
机译:将包含5重量%碳纳米管的溶液纺丝聚丙烯腈(PAN),PAN /多壁碳纳米管(MWCNT)和PAN /单壁碳纳米管(SWCNT)纤维在空气中稳定并使用CO_2和KOH活化。与CO_2活化纤维相比,对于KOH活化纤维,由氮气吸附确定的表面积高一个数量级。 KOH活化的PAN / SWCNT样品在6 M KOH电解质中的比电容高达250 F g〜(-1)。在可比的KOH活化条件下,PAN和PAN / SWCNT纤维具有可比的表面积(BET表面积约为2200 m〜2 g〜(-1)),孔径主要在1-5 nm范围内,而表面积PAN / MWCNT样品明显较低(BET表面积为970 m〜2 g〜(-1))。 PAN / SWCNT样品获得了最高的电容和能量密度,这表明SWCNT在电荷存储方面具有优势。这些电极的电容特性也已在离子液体中进行了测试,离子液体中的能量密度约为使用KOH电解质获得的能量密度的两倍。

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