首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Reduced graphene oxide carbon nanotube hybrid fibers with narrowly distributed mesopores for flexible supercapacitors with high volumetric capacitances and satisfactory durability
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Reduced graphene oxide carbon nanotube hybrid fibers with narrowly distributed mesopores for flexible supercapacitors with high volumetric capacitances and satisfactory durability

机译:用高容量电容和令人满意的耐用性,用狭窄的石墨烯氧化物碳纳米管杂交纤维具有狭窄分布的中孔,用于具有高容量电容的柔性超级电容器和令人满意的耐用性

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摘要

Although graphene fiber supercapacitor is promising as an efficient, flexible and lightweight power source for wearable smart electronic devices, it has a limitation of low volumetric capacitance caused by its loose porous structure and unsatisfactory wettability with electrolytes. Herein, continuous hybrid fibers consisting of reduced graphene oxide (RGO) and carbon nanotubes (CNTs) are fabricated as highly capacitive electrodes by wet-spinning of non-liquid-crystal dispersion of graphene oxide and CNTs with the assistance of a capillary orientation apparatus followed by moderate chemical reduction. The addition of the aligned CNTs benefits the construction of a compact structure with narrowly distributed mesopores in the hybrid fibers, enhances tensile strength of the fibers, and improves internal electrical conduction of the fiber electrode, while the presence of RGO provides pseudocapacitance derived from its residual oxygen-containing groups. Consequently, the hybrid fiber supercapacitor with a polyvinyl alcohol/H2SO4 electrolyte delivers not only high volumetric capacitance of 354.9 F cm(-3) and high energy density of 12.3 mW h cm(-3) at a current density of 0.1 A cm(-3), but also exhibits long cycling stability of 94% after 10,000 cycles and satisfactory bending durability. A stable foldable supercapacitor with origami-based structure is well constructed with high prospects in miniaturized flexible and stretchable devices. (C) 2019 Elsevier Ltd. All rights reserved.
机译:虽然石墨烯纤维超级电容器是具有可穿戴智能电子设备的高效,柔性和轻质的电源,但它具有由其松散的多孔结构引起的低容量电容和与电解质不令人满意的润湿性。这里,通过湿法旋转石墨烯氧化物和CNT的湿法旋转,由毛细管取向装置的耐液旋转制成由石墨烯氧化物(RGO)和碳纳米管(CNT)和碳纳米管(CNT)组成的连续杂化纤维作为高电容电极。通过适度的化学还原。对准CNT的添加有利于杂交纤维中具有狭窄分布的中孔的紧凑结构的结构,增强了纤维的拉伸强度,提高了纤维电极的内部电导,而Rgo的存在提供源自其残留的假偶联含氧基团。因此,具有聚乙烯醇/ H2SO4电解质的杂化纤维超级电容器不仅提供354.9fcm(-3)的高容量电容,并且在电流密度为0.1厘米( - 3),但在10,000个循环后也表现出94%的长循环稳定性,令人满意的弯曲耐久性。具有折纸基结构的稳定可折叠超级电容器,在小型化的柔性和可伸缩装置中具有高前景。 (c)2019年elestvier有限公司保留所有权利。

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