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Chiral-selective growth of single-walled carbon nanotubes on Fe-based catalysts using CO as carbon source

机译:以CO为碳源的铁基催化剂上单壁碳纳米管的手性选择性生长

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MgO supported monometallic Fe (Fe-MgO) and bimetallic FeMn (FeMn-MgO) catalysts were developed for growing carbon nanotubes using CO as carbon source. Characterizations on the Fe-MgO catalyst revealed that Fe cations were well-dispersed in the porous MgO support, forming a solid solution. Since most Fe cations in the solid solution are difficult to reduce, Fe-MgO can only catalyze the growth of single-walled carbon nanotubes (SWCNTs) at temperatures of 700 degrees C and above. While Fe cations in FeMn-MgO could be reduced at lower temperatures with the assistance of Mn, catalyzing the subsequent growth of SWCNTs. Compared with most SWCNTs grown on components like Co or Ni at ambient reaction pressure, the Fe-catalyzed SWCNTs demonstrate rather narrow chirality distributions. Particularly, preferential (6, 5) tube growth on FeMn-MgO was achieved at 600 degrees C. The narrow SWCNT chirality distribution could be inherently related to the high carbon solubility of Fe nanoparticles, favoring the nucleation of SWCNTs by a perpendicular mode. The present studies not only offer essential insights into SWCNT growth mechanisms, but can guide the design of novel catalysts for chirality-controlled growth of SWCNTs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了MgO负载的单金属Fe(Fe-MgO)和双金属FeMn(FeMn-MgO)催化剂,用于使用CO作为碳源生长碳纳米管。在Fe-MgO催化剂上的表征表明,Fe阳离子很好地分散在多孔MgO载体中,形成固溶体。由于固溶体中的大多数Fe阳离子难以还原,因此Fe-MgO仅能在700摄氏度或更高的温度下催化单壁碳纳米管(SWCNT)的生长。 FeMn-MgO中的Fe阳离子可以在较低的温度下借助Mn还原,从而催化SWCNT的后续生长。与大多数在环境反应压力下在Co或Ni等成分上生长的SWCNT相比,铁催化的SWCNT表现出相当窄的手性分布。特别地,在600摄氏度下在FeMn-MgO上实现了优先的(6,5)管生长。狭窄的SWCNT手性分布可能与Fe纳米颗粒的高碳溶解度有内在联系,有利于SWCNT通过垂直模式成核。目前的研究不仅为SWCNT的生长机理提供了重要的见解,而且可以指导手性控制SWCNTs生长的新型催化剂的设计。 (C)2016 Elsevier Ltd.保留所有权利。

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