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Supercritical Fluid Extraction of Bi Multi-layer Graphene sheets from Graphite by using Exfoliation Technique

机译:用剥离技术从石墨中的Bi和多层石墨烯片的超临界流体提取

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In recent times, researchers have tumed to explore the possibility of using Supercritical Fluid (SCFs) system to penetrate into the inert-gaping of graphite and exfoliate it into a number of layer graphene sheets. The supercritical fluid holds excellent wetting surfaces with low interfacial tension and high diffusion coefficients. Although SCFs exfoliation approach looks promising to developed large scale & low-cost graphene sheet but has not received much attention. To arouse interest and reflection on this approach this review is organized to summarize the recent progress in graphene production by SCF technology. Here we present the simplest route to obtained layers of graphene sheets by intercalating and exfoliating graphite using supercritical CO_2 processing. The layers graphene nano-sheets were collected in dichloromethane (DCM) solution which prevents the restocking of sheets. The obtained graphene sheets show the desired characteristics and thus can be used in physical, chemical and biological sciences. Thus this method provides an effortless and eco-friendly approach for the synthesis of layers of graphene sheets.
机译:最近,研究人员已经探讨了使用超临界流体(SCFS)系统渗透到石墨的惰性间隙中的可能性,并将其剥离成多个层石墨烯片。超临界流体具有具有低界面张力和高扩散系数的优异的润湿表面。虽然SCFS去角质方法看起来很有希望开发大规模和低成本的石墨烯床单,但没有受到很多关注。为了引起对这种方法的兴趣和思考,综述了SCF技术的最近石墨烯生产进展。在这里,我们通过使用超临界CO_2加工通过嵌入和剥离石墨来提出最简单的石墨烯片层。将层石墨烯纳米片收集在二氯甲烷(DCM)溶液中,这防止了片材的重新分配。所得的石墨烯片显示出期望的特性,因此可用于物理,化学和生物科学。因此,该方法为合成石墨烯片的合成提供了一种毫不费力和生态的方法。

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