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Fe/Co Alloys for the Catalytic Chemical Vapor Deposition Synthesis of Single- and Double-Walled Carbon Nanotubes (CNTs). 2. The CNT−Fe/Co−MgAl2O4 System

机译:用于单壁和双壁碳纳米管(CNT)催化化学气相沉积合成的Fe / Co合金。 2. CNT-Fe / Co-MgAl2O4系统

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摘要

A detailed 57Fe Mössbauer study of the Mg(0.8)Fe(0.2-y)Co(y)Al2O4 (y = 0, 0.05, 0.1, 0.15, 0.2) solid solutions and of the CNT-Fe/Co-MgAl2O4 nanocomposite powders prepared by reduction in H2-CH4 has allowed characterization of the different iron phases involved in the catalytic process of carbon nanotube (CNT) formation and to correlate these results with the carbon and CNT contents. The oxide precursors consist of defective spinels of general formulas (Mg(1-x-y)(2+)Fe(x-3alpha)(2+)Fe(2alpha)(3+)[symbol: see text](alpha)Co(y)(2+)Al2(3+))O4(2-) . The metallic phase in the CNT-Fe/Co-MgAl2O4 nanocomposite powders is mostly in the form of the ferromagnetic alpha-Fe/Co alloy with the desired composition. For high iron initial proportions, the additional formation of Fe3C and gamma-Fe-C is observed while for high cobalt initial proportions, the additional formation of a gamma-Fe/Co-C phase is favored. The higher yield of CNTs is observed for postreaction alpha-Fe(0.50)Co(0.50) catalytic particles, which form no carbide and have a narrow size distribution. Alloying is beneficial for this system with respect to the formation of CNTs.
机译:详细的57FeMössbauer研究Mg(0.8)Fe(0.2-y)Co(y)Al2O4(y = 0、0.05、0.1、0.15、0.2)固溶体和制备的CNT-Fe / Co-MgAl2O4纳米复合粉末通过减少H2-CH4可以表征碳纳米管(CNT)形成催化过程中涉及的不同铁相,并将这些结果与碳和CNT含量相关联。氧化物前体由通式(Mg(1-xy)(2+)Fe(x-3alpha)(2+)Fe(2alpha)(3 +)[符号:参见文本]αCo( y)(2+)Al2(3 +))O4(2-)。 CNT-Fe / Co-MgAl2O4纳米复合粉末中的金属相主要为具有所需组成的铁磁α-Fe/ Co合金形式。对于高的铁初始比例,观察到另外形成Fe 3 C和γ-Fe-C,而对于高的钴初始比例,有利于另外形成γ-Fe/ Co-C相。对于反应后的α-Fe(0.50)Co(0.50)催化颗粒,观察到CNT的产率更高,该催化颗粒不形成碳化物且尺寸分布较窄。就CNT的形成而言,合金化对该系统是有益的。

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