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Carbon nanofibers with radially grown graphene sheets derived from electrospinning for aqueous supercapacitors with high working voltage and energy density

机译:与径向生长石墨烯纳米碳纤维表来自电纺的水超级电容器在高电压和工作能量密度

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摘要

Improvement of energy density is an urgent task for developing advanced supercapacitors. In this paper, aqueous supercapacitors with high voltage of 1.8 V and energy density of 29.1 W h kg~(-1) were fabricated based on carbon nanofibers (CNFs) and Na2SO4 electrolyte. The CNFs with radially grown graphene sheets (GSs) and small average diameter down to 11 nm were prepared by electrospinning and carbonization in NH3. The radially grown GSs contain between 1 and a few atomic layers with their edges exposed on the surface. The CNFs are doped with nitrogen and oxygen with different concentrations depending on the carbonizing temperature. The supercapacitors exhibit excellent cycling performance with the capacity retention over 93.7% after 5000 charging-discharging cycles. The unique structure, possessing radially grown GSs, small diameter, and heteroatom doping of the CNFs, and application of neutral electrolyte account for the high voltage and energy density of the present supercapacitors. The present supercapacitors are of high promise for practical application due to the high energy density and the advantages of neutral electrolyte including low cost, safety, low corrosivity, and convenient assembly in air.
机译:提高能量密度是一个紧迫的任务发展先进的超级电容器。纸,用高压水超级电容器能量密度为1.8 V和29.1 W h公斤~ (1)基于纳米碳纤维制造(cnf)和Na2SO4电解质。生长石墨烯表(GSs)和小的平均水平直径11 nm准备了电纺的NH3碳化。径向生长GSs包含1到几原子层和边缘暴露表面。氧气与不同浓度取决于炭化温度。表现出优良的循环性能的5000年之后,能力保留超过93.7%充电放电周期。结构,具有径向生长GSs,小直径和杂原子掺杂的cnf,应用中性电解质占的高电压和能量密度现在的超级电容器。超级电容器是实用的高承诺由于高能量密度和应用中性电解质包括的优点低成本、安全、低腐蚀性,方便组装在空气中。

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