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The Application of Gas Dwell Time Control for Rapid Single Wall Carbon Nanotube Forest Synthesis to Acetylene Feedstock

机译:气体停留时间控制在单壁碳纳米管森林快速合成乙炔原料中的应用

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摘要

One aspect of carbon nanotube (CNT) synthesis that remains an obstacle to realize industrial mass production is the growth efficiency. Many approaches have been reported to improve the efficiency, either by lengthening the catalyst lifetime or by increasing the growth rate. We investigated the applicability of dwell time and carbon flux control to optimize yield, growth rate, and catalyst lifetime of water-assisted chemical vapor deposition of single-walled carbon nanotube (SWCNT) forests using acetylene as a carbon feedstock. Our results show that although acetylene is a precursor to CNT synthesis and possesses a high reactivity, the SWCNT forest growth efficiency is highly sensitive to dwell time and carbon flux similar to ethylene. Through a systematic study spanning a wide range of dwell time and carbon flux levels, the relationship of the height, growth rate, and catalyst lifetime is found. Further, for the optimum conditions for 10 min growth, SWCNT forests with ~2500 μm height, ~350 μm/min initial growth rates and extended lifetimes could be achieved by increasing the dwell time to ~5 s, demonstrating the generality of dwell time control to highly reactive gases.
机译:碳纳米管(CNT)合成的一个方面仍然是实现工业大规模生产的障碍,即生长效率。据报道,通过延长催化剂寿命或通过增加生长速率,许多方法可以提高效率。我们研究了停留时间和碳通量控制的适用性,以优化以乙炔为碳原料的单壁碳纳米管(SWCNT)森林的水辅助化学气相沉积的产量,生长速率和催化剂寿命。我们的结果表明,尽管乙炔是CNT合成的前体并具有很高的反应性,但SWCNT森林的生长效率对停留时间和碳通量与乙烯相似,非常敏感。通过对广泛的停留时间和碳通量水平进行系统研究,发现了高度,生长速率和催化剂寿命之间的关系。此外,对于10分钟生长的最佳条件,通过将停留时间增加到〜5 s,可以达到高度约为2500μm,初始生长速度约为〜350μm/ min且寿命延长的SWCNT林,这证明了停留时间控制的一般性高反应性气体。

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