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Growth dynamics of vertically aligned single-walled carbon nanotubes from in situ measurements

机译:从原位测量垂直排列的单壁碳纳米管的生长动力学

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An in situ optical absorbance measurement was used to study the growth dynamics of vertically aligned single-walled carbon nanotubes (VA-SWCNTs) synthesized by chemical vapor deposition of ethanol. The growth rate of the VA-SWCNT film was found to decay exponentially from an initial maximum, resulting in an effective growth time of approximately 15 min. Investigation of various growth conditions revealed an optimum pressure at which growth is maximized, and this pressure depends on the growth temperature. Below this optimum pressure the synthesis reaction is first-order, and the rate-limiting step is the arrival of ethanol at the catalyst. We also present a novel method for determining the burning temperature of low-mass materials, which combines the in situ absorbance measurement with controlled oxidation.
机译:使用原位光吸收率测量来研究通过乙醇化学气相沉积合成的垂直排列的单壁碳纳米管(VA-SWCNT)的生长动力学。发现VA-SWCNT膜的生长速率从初始最大值呈指数衰减,从而导致约15分钟的有效生长时间。对各种生长条件的研究表明,最佳压力可使生长最大化,该压力取决于生长温度。在该最佳压力以下,合成反应是一级反应,而限速步骤是乙醇到达催化剂。我们还提出了一种确定低质量材料燃烧温度的新方法,该方法将原位吸光度测量与受控氧化相结合。

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