首页> 外文会议>ACS National Meeting Exhibition >SUPERCAPACITORS UTILIZING ELECTRODES DERIVED FROM POLYACRYLONITRILE INCORPORATING TETRAMETHYLAMMONIUM OXALATE AS A POROGEN
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SUPERCAPACITORS UTILIZING ELECTRODES DERIVED FROM POLYACRYLONITRILE INCORPORATING TETRAMETHYLAMMONIUM OXALATE AS A POROGEN

机译:利用衍生自聚丙烯腈的电极的超级电容器作为致孔剂的聚丙烯腈纳入四甲基铵

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The demand for energy storage devices haas been increasing due to the mismatch between energy supply and energy demand. Supercapacitors are promising energy storage devices since they combine the advantages, in terms of power and energy densities, of conventional capacitors and batteries. Compared to batteries, however, supercapacitors still have inferior energy density, which mitigates their realization for commercial application. High surface area carbon nanofiber electrodes are one of the promising electrode materials for supercapacitors that store energy electrostatically in the electrode/electrolyte interface.3 For this study, we prepared porous carbon nanofiber electrodes by incorporating tetramethylammonium oxalate (TMAO) as a porogen in polyacrylonitrile (PAN) precursor fibers generated by electrospinning followed by thermal treatment. The obtained electrodes were used directly in coin cell devices using an ionic liquid electrolyte (EMITFSI) and the electrochemical performance is evaluated and discussed.
机译:由于能源供应和能源需求之间的不匹配,对储能设备的需求越来越多。超级电容器是有前途的能量存储设备,因为它们在传统电容器和电池的功率和能量密度方面结合了优点。然而,与电池相比,超级电容器仍然具有较差的能量密度,这减轻了他们对商业应用的实现。高表面积碳纳米纤维电极是超级电容器的有希望的电极材料之一,其超级电容器在电极/电解质接口中静电静电储存能量.3,我们通过将草酸四甲基铵(TMAO)掺入聚丙烯腈中的孔剂(通过静电纺丝,然后热处理产生PAN)前体纤维。所获得的电极直接使用离子液体电解质(Emitfsi)直接在硬币电池装置中使用,并评估电化学性能并讨论。

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