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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >High Rate of Hydrogen Incorporation in Vertically Aligned Carbon Nanotubes during Initial Stages of Growth Quantified by Elastic Recoil Detection
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High Rate of Hydrogen Incorporation in Vertically Aligned Carbon Nanotubes during Initial Stages of Growth Quantified by Elastic Recoil Detection

机译:通过弹性反冲检测量化在初始生长阶段垂直排列的碳纳米管中的高氢结合率

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We quantified the amount of hydrogen in as-grown vertically aligned multiwall CNTs at different stages of growth using elastic recoil detection analysis (ERDA). We suggest that hydrogen is associated with atomic defects and/or amorphous carbon impurities formed at earlier deposition stages. We found that the highest amount of hydrogen (2.3 wt %) was incorporated during the initial growth stage (1520 s). Our results show a decrease of hydrogen content with increasing deposition time and/or with decreasing growth rate, which points to dynamical self-annealing of hydrogen-saturated defects. Consequently, the decrease of hydrogen-related defects leads to a higher quality of MWCNTs, which can be easily detected by ERDA. This research provides new insight into the nanotube growth mechanism and provides a new characterization approach for quantifying hydrogen-saturated atomic defects in MWCNTs.
机译:我们使用弹性反冲检测分析(ERDA)量化了在生长的不同阶段生长的垂直排列的多壁CNT中的氢含量。我们建议氢与早期沉积阶段形成的原子缺陷和/或无定形碳杂质有关。我们发现在初始生长阶段(1520 s)掺入了最高量的氢(2.3 wt%)。我们的结果表明,随着沉积时间的增加和/或生长速率的降低,氢含量降低,这表明氢饱和缺陷的动态自退火。因此,与氢有关的缺陷的减少导致了更高质量的MWCNT,可以通过ERDA轻松检测到。这项研究为纳米管的生长机理提供了新的见识,并为量化MWCNT中氢饱和原子缺陷提供了新的表征方法。

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