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Novel Technique for Producing Porous Carbon Nanofiber Mate for Supercapacitors Application

机译:超级电容器施用多孔碳纳米河配合的新技术

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In this work, Carbon Nanofiber mates (CNF) were fabricated by carbonization of electrospun non-conducting PolyAcryloNitrile (PAN) and PAN/PolyvinylAlcohol (PVA) nanofiber mates at 1100°C. PAN acts as a carbon source while PVA acts as a scarifying material to create porosity which leads to increase the accessible surface area. Two types of samples have been produced, carbon nanofiber mate (CNF) and Porous carbon nanofiber mate (P-CNF). The samples were first characterized by XRD, FTIR and SEM then examined as novel electrodes for supercapacitor applications. The specific capacitance (SC) results of the CNFs based on electrospun PAN mate and P-CNF based on electrospun PAN/PVA mate precursors, were 170 and 202 Fgm~(-1) respectively. The porous structure of P-CNF mate not only increased SC but also increased the capacitive retention and cyclic stability at discharging current density three times higher than that applied in case of CNFs. These results confirm that the tailored P-CNFs have potential for lightweight and durable flexible supercapacitor applications.
机译:在这项工作中,通过在1100℃下通过Electrom Ontine的非导流聚丙烯腈(PAN)和PAN /聚乙烯醇(PVA)纳米纤维配对的碳化来制造碳纳米纤维配套(CNF)。 PAN充当碳源,而PVA用作造币材料以产生导致增加可接近的表面积的孔隙率。已经生产了两种类型的样品,碳纳米纤维配合(CNF)和多孔碳纳米纤维配合(P-CNF)。首先将样品特征在于XRD,FTIR和SEM,然后检查为超级电容器应用的新型电极。基于Electrom Oper Pan / PVA配合前体的电纺PAN配合和P-CNF的CNFS的比电容(SC)分别为170和202FGM〜(-1)。 P-CNF伴侣的多孔结构不仅增加了SC,而且在放电电流密度下增加了电容保留和循环稳定性比在CNF的情况下高出3倍。这些结果证实,定制的P-CNFS具有轻质和耐用的柔性超级电容器应用。

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