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Facilitating the CVD synthesis of seamless double-walled carbon nanotubes

机译:促进无缝双壁碳纳米管的CVD合成

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In this contribution we present a simple laser assisted chemical vapour (LA-CVD) technique that rapidly determines if a given catalyst and feedstock combination are appropriate for the bulk synthesis of double-walled carbon nanotubes (DWCNT) in conventional thermal CVD (T-CVD). Systematic T-CVD studies across a range of temperatures with a Fe-Co catalyst mix for two carbon feedstocks (ethanol and methane) were conducted to validate the LA-CVD technique. The T-CVD findings confirm that the LA-CVD route is appropriate as a fast and easy means to determine the primary carbon nanotube product for a selected catalyst and feedstock in T-CVD. The LA-CVD route reduces the optimization parameters in T-CVD to only that of temperature. The studies led to the bulk production of seamless DWCNT with yields better than 55%.
机译:在这项贡献中,我们提出了一种简单的激光辅助化学蒸气(LA-CVD)技术,该技术可快速确定给定的催化剂和原料组合是否适合常规热CVD(T-CVD)中的双壁碳纳米管(DWCNT)的批量合成)。使用Fe-Co催化剂混合物对两种碳原料(乙醇和甲烷)进行了跨温度范围的系统T-CVD研究,以验证LA-CVD技术。 T-CVD结果证实,LA-CVD路线适合作为一种快速简便的方法来确定T-CVD中所选催化剂和原料的主要碳纳米管产物。 LA-CVD路线将T-CVD中的优化参数仅降低到温度。这些研究导致了无缝DWCNT的批量生产,其良率超过55%。

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