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High-quality thin graphene films from fast electrochemical exfoliation

机译:快速电化学剥离产生的高质量石墨烯薄膜

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摘要

Flexible and ultratransparent conductors based on graphene sheets have been considered as one promising candidate for replacing currently used indium tin oxide films that are unlikely to satisfy future needs due to their increasing cost and losses in conductivity on bending. Here we demonstrate a simple and fast electrochemical method to exfoliate graphite into thin graphene sheets, mainly AB-stacked bilayered graphene with a large lateral size (several to several tens of micrometers). The electrical properties of these exfoliated sheets are readily superior to commonly used reduced graphene oxide, which preparation typically requires many steps including oxidation of graphite and high temperature reduction. These graphene sheets dissolve in dimethyl formamide (DMF), and they can self-aggregate at air-DMF interfaces after adding water as an antisolvent due to their strong surface hydrophobicity. Interestingly, the continuous films obtained exhibit ultratransparency (~96% transmittance), and their sheet resistance is <1k σ/sq after a simple HNO_3 treatment, superior to those based on reduced graphene oxide or graphene sheets by other exfoliation methods. Raman and STM characterizations corroborate that the graphene sheets exfoliated by our electrochemical method preserve the intrinsic structure of graphene.
机译:基于石墨烯片的柔性超透明导体被认为是替代当前使用的铟锡氧化物薄膜的一种有前途的候选者,这些铟锡氧化物薄膜由于成本增加和弯曲时导电性的损失而无法满足未来的需求。在这里,我们展示了一种简单而快速的电化学方法,可将石墨剥落成薄的石墨烯片,主要是AB堆叠的双层石墨烯,其横向尺寸较大(几十至数十微米)。这些剥离片的电性能容易优于常用的还原氧化石墨烯,该制备通常需要许多步骤,包括石墨的氧化和高温还原。这些石墨烯片溶解在二甲基甲酰胺(DMF)中,由于其强大的表面疏水性,在加入水作为抗溶剂后,它们可以在空气-DMF界面上自聚集。有趣的是,所获得的连续膜表现出超透明性(〜96%的透射率),经过简单的HNO_3处理后,其薄层电阻<1kσ/ sq,优于通过其他剥落方法还原的氧化石墨烯或石墨烯薄板。拉曼和STM表征证实了用我们的电化学方法剥离的石墨烯片保留了石墨烯的固有结构。

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