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Low-Temperature Synthesis of Carbon Nanotubes via Floating Catalyst Chemical Vapor Deposition Method

机译:浮式催化剂化学气相沉积法低温合成碳纳米管

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Carbon nanotubes (CNTs) are widely synthesized at high temperatures via floating catalyst chemical vapor deposition (FC-CVD) method. It is important to reduce the synthesis temperature of CNTs to allow better control of the reactor's conditions and to eliminate the formation of carbon by-products. The main objective of this work was to synthesize carbon nanotubes at low temperatures. Temperature in-situ monitoring unit was used to monitor the temperature profile in the reactor. Benzene and ferrocene were used as the carbon source and catalyst precursor, respectively. The minimum pyrolysis temperature of benzene was successfully estimated, and the investigation of temperature profile in the reactor was achieved. In this work, multi-walled CNTs were successfully synthesized for synthesis temperatures between 540°C and 600°C. Based on the analyses, the qualities of CNTs produced were profoundly improved with the increase of synthesis temperatures.
机译:碳纳米管(CNTs)是通过浮动催化剂化学气相沉积(FC-CVD)方法在高温下广泛合成的。重要的是降低CNT的合成温度,以更好地控制反应器的条件并消除碳副产物的形成。这项工作的主要目的是在低温下合成碳纳米管。温度原位监测单元用于监测反应器中的温度分布。苯和二茂铁分别用作碳源和催化剂前体。成功估计了苯的最低热解温度,并完成了反应器温度分布的研究。在这项工作中,成功地在540°C至600°C的合成温度下合成了多壁CNT。在分析的基础上,随着合成温度的升高,生产的碳纳米管的质量得到了显着改善。

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