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Structural Changes in Iron Oxide and Gold Catalysts during Nucleation of Carbon Nanotubes Studied by In Situ Transmission Electron Microscopy

机译:原位透射电子显微镜研究碳纳米管成核过程中氧化铁和金催化剂的结构变化

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摘要

We report a simple, versatile in situ transmission electron microscopy (TEM) approach for investigating the nucleation and growth mechanism of carbon nanotubes (CNTs), by which the composition, phase transition, and physical state of various catalysts can be clearly resolved. In our approach, catalyst nanoparticles (NPs) are placed in a multiwall CNT "tubular furnace" with two open ends, and a high temperature is obtained by Joule heating in the specimen chamber of a TEM. The carbon is supplied by electron irradiation-induced injection of carbon atoms. Comparative studies on the catalytic behavior of traditional iron oxide and recently discovered gold catalysts were performed. It was found that the growth of CNTs from iron oxide involves the reduction of Fe_2O_3 to Fe_3C, nucleation and growth of CNTs from partially liquefied Fe_3C, and finally the formation of elemental Fe when the growth stops. In contrast, while changes in shape, size, and orientation were also observed for the fluctuating Au NPs, no chemical reactions or phase transitions occurred during the nucleation of CNTs. These two distinct nucleation and growth processes and mechanisms would be valuable for the structure-controlled growth of CNTs by catalyst design and engineering.
机译:我们报告了一种简单,通用的原位透射电子显微镜(TEM)方法,用于研究碳纳米管(CNT)的成核和生长机理,通过该方法可以清楚地解决各种催化剂的组成,相变和物理状态。在我们的方法中,将催化剂纳米颗粒(NPs)放在带有两个开口端的多壁CNT“管状炉”中,并通过在TEM的样品室中进行焦耳加热来获得高温。碳是通过电子辐射诱导的碳原子注入来提供的。对传统的氧化铁和最近发现的金催化剂的催化行为进行了比较研究。发现氧化铁对碳纳米管的生长包括Fe_2O_3还原为Fe_3C,部分液化的Fe_3C的成核和碳纳米管的生长,以及最终在停止增长时形成元素铁。相反,虽然也观察到了波动的Au NP的形状,大小和方向的变化,但在CNT成核过程中未发生化学反应或相变。这两个不同的成核和生长过程及机理对于通过催化剂设计和工程控制碳纳米管的结构受控生长将是有价值的。

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