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Effect of ball milling in a tumbling ball mill on the properties of multi-wall carbon nanotubes

机译:转鼓式球磨机中球磨对多壁碳纳米管性能的影响

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The effects of ball milling on various properties of ground multi-wall carbon nanotubes were studied. These properties were granulometry, SEM. specific surface area, density, crystalline structure, surface chemical analysis and thermogravimetry. The mean size of agglomerates, initially at 35 μm, decreases to reach a limit value of 2.5 μm, corresponding to a competition between agglomeration and fragmentation. A kinetic study, based on a decomposition of size distributions measured for different times, has permitted to propose a grinding mechanism. As grinding proceeds, the specific surface area first increases from 175 to 244 m~2 g~(-1) and then decreases, while the real density increases from 1800 to 2150 kg m~(-3) to level off at 2070 kg m~(-3). Moreover, macroporosity disappears totally, giving access first to mesoporosity and then to microporosity. The nanotubes are probably cut to give access to the internal porosity. An increase of the proportion of oxygen adsorbed on carbon (from 3% to 8.7% after 600 min grinding) implies that it may be possible to functionalise the nanotubes. Thanks to these different morphological changes numerous applications of ground nanotubes can be considered. Moreover, the use of a tumbling ball mill allows a massive production of cut nanotubes.
机译:研究了球磨对磨碎的多壁碳纳米管各种性能的影响。这些性质是粒度分析,SEM。比表面积,密度,晶体结构,表面化学分析和热重分析。附聚物的平均尺寸最初为35μm,减小到极限值2.5μm,这对应于附聚物和破碎之间的竞争。基于对不同时间测量的尺寸分布分解进行的动力学研究,提出了一种研磨机理。随着研磨的进行,比表面积首先从175增加到244 m〜2 g〜(-1),然后减小,而实际密度从1800增加到2150 kg m〜(-3)直到达到2070 kg m 〜(-3)。此外,大孔隙度完全消失,首先进入中孔隙度,然后进入微孔隙度。可以将纳米管切开以进入内部孔隙。吸附在碳上的氧气比例(研磨600分钟后从3%增加到8.7%)意味着可能可以对纳米管进行功能化。由于这些不同的形态变化,可以考虑地面纳米管的许多应用。此外,使用翻滚球磨机可以大量生产切割的纳米管。

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