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Carbon and MnO₂ materials on carbon nanofibers cotton textile substrate for hybrid solid-state supercapacitors

机译:用于混合固态超级电容器的碳纳米纤维棉纺织基底上的碳和MnO 2材料

摘要

This work is focused on the design and development of hybrid solid-state energy storage devices with high capacitive performance. In particular, the work includes, the preparation of carbon composite electrodes based on a carbon nanofibers (CNF) supported on a cotton fabric. The coating of CNF to the cotton cloth is obtained by the dip and dry method. On these so-obtained composite substrates, further layers of activated carbon (Norit A Supra Eur) and manganese oxide (MnO2) material have been subsequenlty deposited to enhance the electrochemical performances of negative and positive electrodes, respectively. The preparation of carbon-based active layers comprises the spreading on the negative CNF-substrate of a slurry containing the activated carbon (AC) material, graphite fibres and polyvinylidene difluoride (PVDF) in N,N dimethylacetamide (DMA). Whereas the positive electrode is prepared by spreading a slurry of MnO2, carbon black, graphite fibers, PVDF in DMA. A 1M Na2SO4 solution impregnated in the porous paper separator (Nippon Kodoshi Corportion, Japan) and a polymer electrolyte membrane (Nafion 115) have been employed as electrolytes. The different supercapacitors were electrochemically characterized by cyclic voltammetry (CV), galvanostatic charge/discharge (G–CD), electrochemical impedance spectroscopy (EIS) and long-term cycling stability tests. The hybrid carbon-based textile supercapacitors exhibited capacitance performance of 137 and 120 F/g with the porous separator and Nafion 115 membrane, respectively. Specially, the solid-state (Nafion membrane) hybrid device demonstrated very long stability in cycling (10000 cycles) and holding voltage condition at 1.6 V (more than 100 h). Besides, these textile-based capacitors also showed slow self-discharge.
机译:这项工作专注于具有高电容性能的混合固态储能器件的设计和开发。特别地,该工作包括基于支撑在棉织物上的碳纳米纤维(CNF)制备碳复合电极。 CNF在棉布上的涂层是通过浸渍和干燥方法获得的。在这些如此获得的复合衬底上,分别随后沉积了活性炭(Norit Aur)和氧化锰(MnO2)材料的其他层,以分别增强负极和正极的电化学性能。碳基活性层的制备包括将包含活性炭(AC)材料,石墨纤维和N,N二甲基乙酰胺(DMA)中的聚偏二氟乙烯(PVDF)的浆液铺展在负CNF基板上。而正电极是通过在DMA中散布MnO2,炭黑,石墨纤维,PVDF的浆液制备的。已经使用浸渍在多孔纸分离器(日本Nippon Kodoshi Corportion,日本)中的1M Na 2 SO 4溶液和聚合物电解质膜(Nafion 115)作为电解质。通过循环伏安法(CV),恒电流充/放电(G–CD),电化学阻抗谱(EIS)和长期循环稳定性测试对不同的超级电容器进行电化学表征。混合碳基纺织品超级电容器在多孔隔板和Nafion 115膜下的电容性能分别为137和120 F / g。特别是,固态(Nafion膜)混合装置在循环(10000次循环)和将电压保持在1.6 V(超过100小时)条件下表现出非常长的稳定性。此外,这些基于纺织品的电容器还表现出缓慢的自放电。

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