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首页> 外文期刊>Bangladesh Journal of Scientific and Industrial Research >Structural Modifications of Multi-walled Carbon Nanotubes of Different Diameters through Electron Beam Irradiation
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Structural Modifications of Multi-walled Carbon Nanotubes of Different Diameters through Electron Beam Irradiation

机译:电子束辐照不同直径多壁碳纳米管的结构修饰

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The effects of irradiation on the structure of purified multi-walled carbon nanotubes (MWCNTs) having 6-19 graphitic shells and outer diameters of 8.15-17.11 nm were investigated using electron beam of energies 200 keV and dose of 2.16 x 1017 e cm-2s-1. It was observed that the electron irradiation created a number of chronological alterations in the tube structures. These were identified to be tube contraction, destruction of the innermost graphitic shell, deformation of graphitic shells and its proliferation, break down of the graphitic shells and their spreading into the tube hole and finally the destruction of the whole tube. MWCNTs having the largest innermost diameter found suffer from the highest contraction. The tube contraction behavior found stops when the innermost graphitic shell starts to destroy. Irradiation affected the innermost graphitic shell first and that of the smallest diameter was the more rapidly. It occurred probably due to having the highest curvature value. Tubes having inner shell of diameter about 4.8 nm suffer from fractional destruction within 5-15 s of irradiation exposure. Such a shell was ruined within 1 minute of irradiation exposure but that of diameter 7.0 nm was survived up to 2 minutes. It seems that the irradiation induced defects created in the MWCNTs can be used for the diversified applications of nanotubes such as the hydrogen storage enhancement in them. Keywords: Carbon nanotube; Electron irradiation; Tube contraction; Innermost shell; Defect. DOI: http://dx.doi.org/10.3329/bjsir.v46i1.8099 Bangladesh J. Sci. Ind. Res. 46(1), 9-16, 2011  
机译:使用能量为200 keV的电子束和剂量为2.16 x 1017 e cm-2s的电子束,研究了辐照对具有6-19个石墨壳,外径为8.15-17.11 nm的纯化多壁碳纳米管(MWCNT)结构的影响。 -1。观察到电子辐射在管结构中产生了许多时间上的变化。这些被认为是管的收缩,最里面的石墨壳的破坏,石墨壳的变形及其扩散,石墨壳的破裂以及它们扩散到管孔中,最后是整个管的破坏。发现最大内径最大的MWCNT收缩最大。当最里面的石墨壳开始破坏时,发现的管收缩行为停止。辐照首先影响最内层的石墨壳,直径最小的辐照速度更快。它可能是由于具有最高的曲率值而发生的。具有直径约4.8 nm的内壳的试管在5-15 s的辐照时间内遭受部分破坏。这样的壳在暴露于辐射的1分钟内被破坏,但是直径7.0nm的壳可以存活到2分钟。看来,在碳纳米管中产生的辐照引起的缺陷可用于纳米管的多样化应用,例如增强纳米管中的储氢能力。关键词:碳纳米管电子辐照;管收缩;最内层外壳缺陷。 DOI:http://dx.doi.org/10.3329/bjsir.v46i1.8099 Bangladesh J. Sci。工业界46(1),9-16,2011

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