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High performance supercapacitors using lignin based electrospun carbon nanofiber electrodes in ionic liquid electrolytes

机译:高性能超级电容器,采用基于木质素的电纺碳纳米纤维电极在离子液体电解质中

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摘要

Flexible, free standing and binder-free electrodes were fabricated by electrospinning from a series of lignin: polyvinyl alcohol (PVA) polymer blends, followed by heat treatment. PVA has the dual function of facilitating the electrospinning of lignin and acting as a sacrificial polymer. Upon stabilization, carbonization and CO2 activation, carbon nanofibers (ACNF) derived from the lignin:PVA 80:20 blend displayed a high surface area of 2170 m(2) g(-1) and a mesopore volume of 0.365 cm(3) g(-1). ACNFs derived from all the compositions show high degrees of graphitization based on Raman analysis. Pyr(14) TFSI ionic liquid (IL), modified by mixing with propylene carbonate and ethylene carbonate to reduce the viscosity and increase the ionic conductivity, was used as a high-performance electrolyte. The resulting IL mixture exhibited a four-fold increase in ionic conductivity compared to the neat IL Coin cell supercapacitors using electrodes derived from lignin:PVA 80:20 blends and this electrolyte displayed 87 F g(-1) specific capacitance and 38 Wh kg(-1) energy density which is the highest reported energy density for lignin:PVA blends to date.
机译:通过从一系列木质素中的静电纺丝来制造柔性,自由静态和无粘合剂电极:聚乙烯醇(PVA)聚合物共混物,然后进行热处理。 PVA具有促进木质素的静电纺丝并用作牺牲聚合物的双重功能。稳定,碳化和CO 2活化,衍生自木质素的碳纳米纤维(ACNF):PVA 80:20共混物显示出2170m(2 )g(-1)的高表面积和0.365cm(3)克的中孔体积(-1)。源自所有组合物的ACNFS显示基于拉曼分析的高度石墨化。通过与碳酸亚丙酯和碳酸亚乙酯混合改性的Pyr(14)TFSI离子液体(IL),以降低粘度并增加离子电导率,用作高性能电解质。与甘氨酸衍生的电极相比,所得IL混合物的离子电导率的增加:PVA 80:20混合物和该电解质显示87 f G(-1)特定电容和38WH kg( -1)能量密度是木质素的最高报告的能量密度:PVA迄今为止混合。

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