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Gas-phase synthesis of single-walled carbon nanotubes on catalysts producing high yield

机译:在催化剂上气相合成单壁碳纳米管,产量高

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摘要

Composite catalysts are employed for high yield gas-phase synthesis of single-walled carbon nanotubes (SWCNTs). Specifically, silicon is investigated as an additive to iron catalysts for synthesis of SWCNTs in inverse diffusion flames. While silicon is often used as a substrate in supported-catalyst processes to promote nanotube growth, this study demonstrates that it can also be beneficial for gas-phase nanotube synthesis in diffusion flames. An oxy-fuel ethylene inverse diffusion flame is employed to provide a soot-free, carbon-rich environment for nanotube growth. Iron and silicon precursors are added to the fuel stream for nucleation of iron/silicon/oxygen catalyst particles, with the amount of particle oxidation determined by the amount of oxygen-enrichment and fuel dilution at a given temperature. Under optimum conditions, nearly 90% of the catalyst particles produce single-walled carbon nanotubes as compared to less than 10% when the catalyst consists of only iron and oxygen. The effect of silicon addition is investigated through variation of the iron/silicon ratio and measurement of nanotube growth rates. Silicon is shown to primarily affect SWCNT inception with minimal influence on growth rate.
机译:复合催化剂用于单壁碳纳米管(SWCNT)的高产率气相合成。具体地,研究了硅作为铁催化剂的添加剂,以在反向扩散火焰中合成SWCNT。尽管硅通常在负载型催化剂工艺中用作促进纳米管生长的基质,但这项研究表明,硅也可用于扩散火焰中气相纳米管的合成。氧燃料乙烯逆扩散火焰用于为纳米管生长提供无烟灰,富碳的环境。将铁和硅前体添加到燃料流中以成核铁/硅/氧催化剂颗粒,颗粒氧化量由给定温度下的富氧量和燃料稀释量决定。在最佳条件下,将近90%的催化剂颗粒会产生单壁碳纳米管,而当催化剂仅由铁和氧组成时,则不到10%。通过改变铁/硅比例和测量纳米管的生长速度来研究添加硅的效果。硅被证明主要影响SWCNT的开始,而对增长率的影响却很小。

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