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Efficient Production of High-Quality Few-Layer Graphene Using a Simple Hydrodynamic-Assisted Exfoliation Method

机译:简单的水动力辅助剥离法可高效生产高质量的几层石墨烯

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摘要

Graphene, a two-dimensional nanomaterial, has shown tremendous promising applications in a broad range of fields. Mass production of defect-free graphene is a prerequisite for its applications. In this work, by using a needle valve, we propose a simple hydrodynamic-assisted exfoliation method to produce high-quality few-layer graphene flakes. The prepared graphene flakes, with an average layer of 5 (~ 71% less than five layers) and a Raman D/G intensity ratio as low as 0.1, are free of defects and oxidation. The average thickness and length of the few-layer graphene flakes are 2.3 nm (~ 90% < 4 nm) and 1.9 μm (~ 50% in the range of 1–7 μm), respectively. In a lab-scale trial, the concentration of graphene can reach 0.40 g/ml under mild operating conditions (working pressure 20 MPa, 16 cycles), and the corresponding production rate is 0.40 g/h. The hydrodynamic-assisted exfoliation by needle valve potentially offers a simple and efficient method for large-scale production of high-quality graphene.
机译:石墨烯是一种二维纳米材料,在广泛的领域中显示出巨大的应用前景。大量生产无缺陷的石墨烯是其应用的前提。在这项工作中,通过使用针阀,我们提出了一种简单的水力辅助剥离方法来生产高质量的几层石墨烯薄片。制备的石墨烯薄片平均层数为5(比五层少约71%),拉曼D / G强度比低至0.1,没有缺陷和氧化。几层石墨烯薄片的平均厚度和长度分别为2.3 nm(〜90%<4 nm)和1.9μm(〜50%在1-7μm范围内)。在实验室规模的试验中,在温和的操作条件下(工作压力20 MPa,16个循环),石墨烯的浓度可以达到0.40 g / ml,相应的生产率为0.40 g / h。针阀的水力辅助剥落技术可能为大规模生产高质量石墨烯提供一种简单有效的方法。

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