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Temperature dependence of iron oxide-graphene oxide properties for synthesis of carbon nanotube/graphene hybrid material

机译:氧化铁 - 石墨烯氧化物性能合成碳纳米管/石墨烯杂化材料的温度依赖性

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摘要

Iron oxide embedded on graphene oxide (Fe2O3/GO) was prepared by chemical exfoliation followed by wet impregnation. Reduced Fe2O3/GO could be employed as catalyst for synthesizing carbon nanotubes CNTs via catalytic chemical vapor deposition CCVD of n-hexane within a temperature range of 700-1000 degrees C. It was found that during the synthesis process, pretreatment affected the transformation of iron nanoparticles in the Fe2O3/GO, leading to significant difference in formation of carbon nanoparticles. When the Fe2O3/GO was employed within a temperature range of 700 900 degrees C, Fe2O3 was reduced to alpha-Fe, yielding CNT growth on the graphene surface. However, the alpha-Fe could be transformed to gamma-Fe when the Fe2O3/GO was subject to the temperature of 1000 degrees C, resulting in formation of carbon spheres instead of CNTs. After experimentally verified, conceptual scenarios of CNT/graphene hybrid material formation with respect to the pretreatment and synthesis temperature were proposed and discussed.
机译:通过化学剥离和湿法浸渍制备了嵌入在氧化石墨烯(Fe2O3/GO)上的氧化铁。还原Fe2O3/GO可以作为催化剂,在700-1000℃的温度范围内,通过正己烷催化化学气相沉积CCVD合成碳纳米管。研究发现,在合成过程中,预处理影响Fe2O3/GO中铁纳米颗粒的转化,导致碳纳米颗粒的形成存在显著差异。当在700-900℃的温度范围内使用Fe2O3/GO时,Fe2O3被还原为α-Fe,在石墨烯表面产生CNT生长。然而,当Fe2O3/GO受到1000℃的温度时,α-Fe可以转化为γ-Fe,从而形成碳球而不是碳纳米管。经过实验验证,提出并讨论了碳纳米管/石墨烯杂化材料形成与预处理和合成温度的关系。

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