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首页> 外文期刊>Journal of Materials Science >Effect of the microstructure on the intercalation and exfoliation behaviour of graphite
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Effect of the microstructure on the intercalation and exfoliation behaviour of graphite

机译:微观结构对石墨插层和剥落行为的影响

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The process of the preparation of graphitic nanoplatelets via chemical intercalation and thermal exfoliation of graphite was considered. The dependence of the properties of the final product on the microstructure of the raw material and on different process parameters was analyzed. It is shown that the microstructure of the raw material has considerable influence on the structural transformations during the different preparation steps. The observed differences can be understood assuming that intercalation is initiated at the edges of graphite crystallites by the formation of intercalate nuclei. Essential differences of the nucleation time appear for unequal types of microstructure and give rise to different intercalation states. It is also shown that the sub-process of washing and drying the samples after intercalation is most critical and has significant influence on the characteristics of the final products. The results suggest that graphite fibres with sub-micron diameter and orientation of the crystallographic c-axis along the fibre axis will be particularly favourable for the preparation of graphitic nanoplatelets.
机译:考虑了通过石墨的化学插层和热剥落制备石墨纳米片的过程。分析了最终产品的性能对原材料微观结构和不同工艺参数的依赖性。结果表明,在不同的制备步骤中,原料的微观结构对结构转变具有相当大的影响。假定嵌入是通过形成嵌入核形成在石墨微晶的边缘开始的,则可以理解所观察到的差异。对于不相等类型的微观结构,成核时间的本质差异出现了,并导致了不同的插层状态。还表明,插入后洗涤和干燥样品的子过程最为关键,并且对最终产品的特性有重大影响。结果表明,具有亚微米直径和沿纤维轴的晶体学c轴取向的石墨纤维将特别有利于制备石墨纳米片。

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