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High shear-induced exfoliation of graphite into high quality graphene by Taylor–Couette flow

机译:通过Taylor-Couette流量将石墨的高剪切诱导的石墨剥离为高质量的石墨烯

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The development of an industrially scalable method to produce large quantities of high quality graphene is essential for its practical application in electronics, composite materials, and energy storage devices. Here, we report a method for bulk preparation of few-layer graphene by shear exfoliation of graphite in liquids. We showed that high shear mixing of graphite and solvent in the Taylor vortex flow regime resulted in an efficient exfoliation of graphite into few-layer graphene with a high yield. According to Raman spectroscopy and X-ray photoelectron spectroscopy, the exfoliated graphene flakes were found to exhibited a low oxidation degree and a low content of defects. Optimization of Taylor flow processing parameters based on computational fluid dynamics (CFD) studies further improved the efficiency of graphite exfoliation, thereby achieving an overall yield of up to ~5%. The described Taylor flow-based shear exfoliation of graphite may have great potential to produce high quality graphene on an industrially accessible scale.
机译:生产大量高质量石墨烯的工业上可扩展方法的开发对于其在电子,复合材料和能量存储装置中的实际应用是必不可少的。在这里,我们通过液体中石墨的剪切剥离来报告批量制备几层石墨烯的方法。我们表明,Taylor涡流状态中的石墨和溶剂的高剪切混合导致石墨的高效石墨的有效剥离,产率高。根据拉曼光谱和X射线光电子能谱,发现剥落的石墨烯薄片表现出低氧化度和缺陷含量的低含量。基于计算流体动力学(CFD)研究的泰勒流量处理参数的优化进一步提高了石墨剥离的效率,从而实现了最高〜5%的总收益率。所描述的泰勒流动的石墨剪切剥离可能具有在工业上可接近的规模上产生高质量石墨烯的巨大潜力。

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