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Effect of purification treatment on adsorption characteristics of carbon nanotubes

机译:净化处理对碳纳米管吸附特性的影响

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Carbon nanotubes are novel materials with porous-rich structures and superior adsorption characteristics. In this report, multi-walled carbon nanotubes with different diameter were synthesized by thermal chemical vapor deposition. Amorphous carbon particles were highly removed by thermal oxidation process. Microwave digestion acidic procedure was used to dissolve metal catalysts and open tip of carbon nanotubes. The opened-end multi-walled carbon nanotubes are expected to be much more porous with more gas adsorption sites. The results indicated that the BET surface area decreases with their increasing of diameter of MWCNTs. The effective surface area of carbon nanotubes processed by thermal annealing treatment can increase with the increasing temperatures of 300 deg C, 400 deg C and 450 deg C. Similarly, effective surface area of carbon nanotubes processed by microwave digestion acidic treatment can also increase with increasing processing time. Nitric acid can effectively absorb microwave energy and rapidly dissolve impurities in the carbon nanotubes during digestion process. The surface area increased about 30 percent with 20 min microwave digestion treatment time. However, microwave digestion acidic and thermal annealing treatments not only remove metallic catalysts and amorphous carbon particles and also increase effective surface area and the extent of purification of carbon nanotubes.
机译:碳纳米管是具有富孔结构和优异吸附特性的新型材料。在该报告中,通过热化学气相沉积合成了具有不同直径的多壁碳纳米管。非晶碳颗粒通过热氧化过程被高度去除。微波消解酸性程序用于溶解金属催化剂和碳纳米管的开放尖端。预计开放式多壁碳纳米管将具有更多的多孔性以及更多的气体吸附位点。结果表明,BET表面积随MWCNTs直径的增加而减小。通过加热退火处理的碳纳米管的有效表面积可以随温度升高300℃,400℃和450℃而增加。类似地,通过微波消解酸性处理的碳纳米管的有效表面积也可以随温度的增加而增加。处理时间。硝酸可以有效吸收微波能量,并在消化过程中迅速溶解碳纳米管中的杂质。随着20分钟微波消解处理时间的增加,表面积增加了约30%。然而,微波消解的酸性和热退火处理不仅去除了金属催化剂和无定形碳颗粒,而且还增加了有效表面积和碳纳米管的纯化程度。

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