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Synthesis of high purity single-walled carbon nanotubes from ethanol by catalytic gas flow CVD reactions

机译:催化气流CVD反应由乙醇合成高纯度单壁碳纳米管

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摘要

Highly pure single-walled carbon nanotubes (SWNTs) with their contents > 96 percent of the total products were achieved by chemical vapour deposition gas flow reactions using ethanol as the carbon source. The high purity SWNTs were formed under critically controlled synthesis conditions and by applying a high hydrogen flow, under which the non-catalytic condensation of carbon was completely suppressed. Purification of the products in acid at ambient conditions readily yielded over 99 percent pure SWNT products, as the only impurities left in the products were iron particles of clean surface. Therefore, the present study demonstrates the full potential of the CVD gas flow reactions in continuous production of high quality SWNTs. Comparable syntheses were conducted using other alcohols in place of ethanol and it was found that high alkyl alcohols like isopropanol and hexanol produced more amorphous carbon while methanol produced no carbon. The high yield growth of SWNTs was attributed greatly to the reaction chemistry of ethanol and the 'right' amount of hydrogen in the system, as discussed.
机译:通过使用乙醇作为碳源的化学气相沉积气流反应,可以得到含量> 96%的高纯度单壁碳纳米管(SWNT)。高纯度单壁碳纳米管是在严格控制的合成条件下并通过施加高氢流量形成的,在此条件下,碳的非催化缩合被完全抑制。在环境条件下在酸性条件下纯化产品可轻松获得超过99%的纯SWNT产品,因为产品中仅留下的杂质是清洁表面的铁颗粒。因此,本研究证明了在连续生产高质量单壁碳纳米管中CVD气流反应的全部潜力。使用其他醇代替乙醇进行了可比的合成,结果发现,高烷基醇(如异丙醇和己醇)产生更多的无定形碳,而甲醇不产生碳。如前所述,单壁碳纳米管的高产量增长在很大程度上归因于乙醇的反应化学和系统中“适量”的氢。

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