论文标题

可扩展的喷涂石墨烯基电极,用于在温度范围内运行的高功率电化学双层电容器

Scalable spray-coated graphene-based electrodes for high-power electrochemical double-layer capacitors operating over a wide range of temperature

论文作者

Garakani, Mohammad Akbari, Bellani, Sebastiano, Pellegrini, Vittorio, Oropesa-Nuñez, Reinier, Del RioCastillo, Antonio Esau, Abouali, Sara, Najafi, Leyla, Martín-García, Beatriz, Ansaldo, Alberto, Bondavalli, Paolo, Demirci, Cansunur, Romano, Valentino, Mantero, Elisa, Marasco, Luigi, Prato, Mirko, Bracciale, Gaetan, Bonaccorso, Francesco

论文摘要

电化学双层电容器(EDLC)技术的进步需要伴随使用新型有效电极材料和可行的电极制造方法。成本效益,可伸缩性和可持续性是实现全球立法所接受的产品开发链的钥匙驱动因素。在此,我们报告了基于活性碳和单层石墨烯(SLG/FLG)片的可扩展且可扩展的“绿色”电极材料墨水。我们表明,与商业减少氧化石墨烯相反,无缺陷和扁平SLG/FLG薄片减少了电极膜上离子的摩擦,而我们墨水的喷涂涂料沉积可最大程度地吸收电极表面积的电解质可访问性。基于喷涂的SLG/FLG薄片的EDLC显示出较高的速率能力性能(例如,在150、7500和30000 W kg-1的特定功率上,特定的能量为31.5、23.7和12.5 WH kg-1,与无需SLG/FLG FLAKS FLAKES-FLAKES-FLAKS-FLAKE-FLAKS-FLAKS-FLAKS-FLAKS-FLAKS-FLAKS-FLAKS-FLAKS-FLAKS-FLAKS-FLAKS-FLAKS-FLAK-FLC和商业样的EDLC相比。 SLG/FLG薄片的使用使我们的喷雾EDLC能够在与离子液体/有机溶剂的电解质相吻合的温度范围(-40/+100°C)的范围内,克服了基于AC的EDLC的特定功率限制。一个由多个大区域EDLC组成的原型EDLCS堆栈,每个EDLC的电容为25 F,证明了我们技术的工业潜力。

Advancements in electrochemical double-layer capacitor (EDLC) technology require the concomitant use of novel efficient electrode materials and viable electrode manufacturing methods. Cost-effectiveness, scalability and sustainability are key-drivers for fulfilling product development chain accepted by worldwide legislations. Herein, we report a scalable and sprayable "green" electrode material-based ink based on activated carbon and single-/few-layer graphene (SLG/FLG) flakes. We show that, contrary to commercial reduced graphene oxide, defect-free and flat SLG/FLG flakes reduce the friction of ions over the electrode films, while spray coating deposition of our ink maximises the electrolyte accessibility to the electrode surface area. Sprayed SLG/FLG flakes-based EDLCs display superior rate capability performance (e.g., specific energies of 31.5, 23.7 and 12.5 Wh kg-1 at specific powers of 150, 7500 and 30000 W kg-1, respectively) compared to both SLG/FLG flakes-free devices and commercial-like EDLCs produced by slurry-coating method. The use of SLG/FLG flakes enables our sprayed EDLCs to operate in a wide range of temperature (-40/+100°C) compatible with ionic liquid/organic solvent-based electrolytes, overcoming the specific power limits of AC-based EDLCs. A prototype EDLCs stack consisting of multiple large-area EDLCs, each one displaying a capacitance of 25 F, demonstrates the industrial potential of our technology.

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