Dalian National Laboratory for Clean Energy , Dalian Institute of Chemical Physics, Chinese Academy of Sciences , 457 Zhongshan Road , Dalian 116023 , China.
State Key Laboratory of Catalysis , Dalian Institute of Chemical Physics, Chinese Academy of Sciences , 457 Zhongshan Road , Dalian 116023 , China.
J Am Chem Soc. 2018 Jul 5;140(26):8198-8205. doi: 10.1021/jacs.8b03235. Epub 2018 Jun 26.
Scalable production of high-quality heteroatom-modified graphene is critical for microscale supercapacitors but remains a great challenge. Herein, we demonstrate a scalable, single-step electrochemical exfoliation of graphite into highly solution-processable fluorine-modified graphene (FG), achieved in an aqueous fluorine-containing neutral electrolyte, for flexible and high-energy-density ionogel-based microsupercapacitors (FG-MSCs). The electrochemically exfoliated FG nanosheets are characterized by atomic thinness, large lateral size (up to 12 μm), a high yield of >70% with ≤3 layers, and a fluorine doping of 3 at%, allowing for large-scale production of FG-MSCs. Our ionogel-based FG-MSCs deliver high energy density of 56 mWh cm, by far outperforming the most reported MSCs. Furthermore, the all-solid-state microdevices offer exceptional cyclability with ∼93% after 5000 cycles, robust mechanical flexibility with 100% of capacitance retention bended at 180°, and outstanding serial and parallel integration without the requirement of metal-based interconnects for high-voltage and high-capacitance output. Therefore, these FG-MSCs represent remarkable potential for electronics.
高质量杂原子修饰石墨烯的可扩展生产对于微尺度超级电容器至关重要,但仍然是一个巨大的挑战。在此,我们展示了一种可扩展的、一步电化学剥离石墨成高度可溶液加工的氟修饰石墨烯(FG)的方法,该方法在含氟的中性水溶液电解质中实现,用于柔性和高能量密度的基于离子凝胶的微超级电容器(FG-MSCs)。电化学剥离的 FG 纳米片具有原子级厚度、大的横向尺寸(高达 12 μm)、高产率(>70%,≤3 层)和 3 at%的氟掺杂,允许大规模生产 FG-MSCs。我们基于离子凝胶的 FG-MSCs 提供了 56 mWh cm 的高能量密度,远远超过了大多数报道的 MSCs。此外,全固态微器件具有出色的循环稳定性,在经过 5000 次循环后仍保持约 93%的电容,具有优异的机械柔韧性,在 180°弯曲时保持 100%的电容,以及出色的串联和并联集成,无需使用金属基互连来实现高压和高电容输出。因此,这些 FG-MSCs 在电子领域具有显著的应用潜力。