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Continuous synthesis of graphite with tunable interlayer distance

机译:可调谐层间距离连续合成石墨

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摘要

A study was carried out to produce graphite with controlled interlayer distance synthesized from methane using hydrogen as modifying agent. The synthesis was carried out in radio frequency (r.f.) thermal plasma where the methane-to-hydrogen ratio varied systematically over a wide range. The synthesized materials were investigated in terms of structure, morphology and the interlayer distance. It is found that there is a critical fraction of hydrogen, around half of that of methane flow rate, up to which it is possible to control the interlayer distance as well as the number of layers making up the platelet in the synthesized material. The number of layers which were around 25 in the granular graphite obtained with methane only was modified into a flaky graphite of 10 mu m in size with as few as 12 layers yielding a surface area of 300 m(2)/g. The result combined with data from literature show that it is possible to adjust the interlayer distance in graphite from Lc = 0.334 to 0.369 nm even up to 0.416 nm. The significance of this was discussed within the context of the use of graphite as anode in rechargeable batteries.
机译:进行研究以产生具有由氢气合成的受控层间距离的石墨,其使用氢作为改性剂。合成在射频(R.F.)热等离子体中进行,其中甲烷 - 氢比在宽范围内系统地变化。在结构,形态和层间距离方面研究了合成的材料。发现氢气的临界分数是甲烷流速的一半,从而可以控制层间距离以及构成合成材料中的血小板的层数。在用甲烷中获得的粒状石墨中的25个左右的层数仅被修饰成10μm的片状石墨,尺寸为10μm,少于12层,得到300μm(2)/ g的表面积。结果与文献中的数据相结合,表明,可以将来自LC = 0.334的石墨中的层间距离调节至0.369nm,即使高达0.416nm。在使用石墨中作为可充电电池的阳极的使用范围内讨论了这一点的重要性。

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