首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A freestanding cellulose nanofibril-reduced graphene oxide-molybdenum oxynitride aerogel film electrode for all-solid-state supercapacitors with ultrahigh energy density
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A freestanding cellulose nanofibril-reduced graphene oxide-molybdenum oxynitride aerogel film electrode for all-solid-state supercapacitors with ultrahigh energy density

机译:一种独立的纤维素纳米纤维 - 还原的石墨烯氧化钼 - 用于全固态超级电容器的全固态超级电容器的氧氮化物气凝胶膜电极

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摘要

A free-standing, lightweight, highly porous, and highly flexible cellulose nanofibril (CNF)-reduced graphene oxide (RGO)-molybdenum oxynitride (MoOxNy) aerogel film electrode was synthesized by freeze-drying a CNF/GO/MoO3 aqueous dispersion followed by subsequent in situ hydrazine reduction. Due to the partial reduction and nitrogen doping of the MoO3 nanobelts and the highly open and continuous porous structure, the free-standing CNF/RGO/MoOxNy aerogel film electrode delivered an outstanding specific capacitance of 680 F g(-1) in an aqueous electrolyte and 518 F g(-1) in an ionic liquid electrolyte in a three-electrode configuration at a current density of 1.0 A g(-1). Furthermore, highly flexible and all-solid-state supercapacitors using CNF/RGO/MoOxNy as electrodes and either a hydrogel or ionogel as the electrolyte were fabricated and both types of supercapacitors demonstrated high specific capacitance and excellent long-term cycling stability. Remarkably, the solid-state supercapacitor devices fabricated using an ionogel electrolyte demonstrated an energy density of 114 W h kg(-1) (corresponding to a volumetric energy density of 18.8 W h L-1), which is among the highest values achieved for any type of solid-state supercapacitor and is even comparable to the energy densities of Li-ion batteries. Therefore, this study provides a simple and cost-efficient method for fabricating flexible energy storage devices with excellent electrochemical performance.
机译:一种自由站立,重量轻,高度多孔的,且高度灵活的纤维素纳米纤丝(CNF) - 减少氧化石墨烯(RGO) - 钼氧氮化物(MoOxNy)气凝胶薄膜电极是由合成冷冻干燥CNF / GO /氧化钼水性分散液,接着随后原位肼还原。由于氧化钼纳米带的部分还原和氮掺杂和高度开放和连续的多孔结构中,自由站立CNF / RGO / MoOxNy气凝胶薄膜电极在含水电解质输送的680 F G(-1)的优秀的比电容和518 F G(-1)中的三电极结构的离子液体电解质以1.0甲g的电流密度(-1)。此外,使用CNF / RGO / MoOxNy作为电极以及一个水凝胶或离子凝胶作为电解质被制造和这两种类型的超级电容器的高度灵活的和全固态超级电容器表现出高的比电容和优异的长期循环稳定性。值得注意的是,该固态超级电容器设备使用离子凝胶电解质制造表现出的能量密度为114 W时千克(-1)(对应于18.8 W时L-1的体积能量密度),这是为达到的最高值中任何类型的固态超级电容器,并甚至可以媲美的锂离子电池的能量密度。因此,本研究提供了具有优异的电化学性能的制造柔性能量存储设备的简单且成本有效的方法。

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