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The production of graphene using impinging jet exfoliation in a binary system of CO2 and N-methyl pyrrolidone

机译:石墨烯生产在CO 2和N-甲基吡咯烷酮的二元体系中撞击喷射剥离

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摘要

High quality and high quantity few-layer graphene was successfully prepared using a new impinging jet method. Natural graphite flakes were first agitated in N-methyl pyrrolidone (NMP) with the assistance of supercritical CO2, then the half-exfoliated graphite was further stripped using the shear stress derived from the impinging jets. After the energy conversion and stress analysis of the graphite particles during the whole exfoliation process, it was revealed that the size of the target mesh, the distance between the nozzle and the target, the decompression rate, and the size of the raw materials had a significant influence on the exfoliation process. Additionally, a microscopic view of the exfoliation and dispersion mechanism of graphene in the CO2-NMP system was investigated using molecular dynamics simulation, and CO2 was found to be beneficial for the penetration of NMP into the graphite sheets. Finally, the concentration and quality characteristics of the prepared graphene were characterized using ultraviolet-visible spectroscopy, transmission electron microscopy, Raman spectroscopy, and atomic force microscopy. The maximum concentration was as high as 0.689 mg ml(-1), the thickness of 68% of the product was less than 2.5 nm, and the lateral dimension was from 0.5 to 3.0 mu m. These results indicate that this impinging jet method is promising for large-scale industrial production.
机译:使用新的撞击喷射方法成功制备了高质量和高量的几层石墨烯。在超临界CO 2的辅助下,首先在N-甲基吡咯烷酮(NMP)中搅拌天然石墨薄片,然后使用从撞击喷射射流的剪切应力进一步剥离半剥离的石墨。在整个剥离过程中的石墨颗粒的能量转换和应力分析之后,揭示了目标网格的尺寸,喷嘴和目标之间的距离,减压率和原料的尺寸有一个对剥离过程的重大影响。另外,使用分子动力学模拟研究了CO 2-NMP系统中石墨烯的剥离和分散机制的微观视图,发现CO 2有利于NMP渗透到石墨板中。最后,使用紫外线可见光谱,透射电子显微镜,拉曼光谱和原子力显微镜表征制备石墨烯的浓度和质量特征。最大浓度高达0.689mg ml(-1),厚度为68%的产物小于2.5nm,横向尺寸为0.5至3.0μm。这些结果表明,这种撞击喷射方法对大型工业生产是有前途的。

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