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Quantitative evaluation of delamination of graphite by wet media milling

机译:湿法研磨对石墨分层的定量评估

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摘要

Surfactant-free Few-Layer-Graphene (FLG) suspensions were prepared by wet media delamination of unmodified isostatic graphite in organic solvents using a shaking plate for fast screening of favorable process parameters and a stirred media mill as a delamination tool. The achieved FLG-concentration was determined by a combination of UV/Vis and Raman spectroscopy. A study of wet delamination for different solvents reveals an analogue behavior as for ultrasound-assisted delaminated samples. In N-methylpyrrolidone as dispersing medium the influence of delamination process parameters on FLG concentration was studied and an optimal set of parameters was found. A comparison between various delamination methods shows that delamination by enhanced shear leads to largest flake structures. The highest value for the FLG production rate (produced mass/time) is obtained in a stirred media mill. The formation of FLG was also proved by measuring the flake thickness by atomic force microscopy (AFM). The FLG percentage derived from AFM agrees well with the results determined by statistical Raman spectroscopic analyses.
机译:无表面活性剂的很少层石墨烯(FLG)悬浮液是通过使用有机硅摇板快速筛选有利的工艺参数,并使用搅拌式介质磨作为分层工具,通过将有机溶剂中未改性的等静压石墨湿法分层而制备的。通过UV / Vis和拉曼光谱的组合来确定所达到的FLG浓度。一项针对不同溶剂的湿分层研究表明,与超声辅助分层样品的模拟行为相似。在N-甲基吡咯烷酮作为分散介质中,研究了分层工艺参数对FLG浓度的影响,并找到了一组最佳参数。各种分层方法之间的比较表明,通过增强剪切力进行分层会导致最大的薄片结构。 FLG生产率(生产的质量/时间)的最大值是在搅拌式介质磨中获得的。 FLG的形成还通过原子力显微镜(AFM)测量薄片厚度来证明。由原子力显微镜得出的FLG百分比与统计拉曼光谱分析确定的结果非常吻合。

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