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Selective synthesis of metallic and semi-conducting single-walled carbon nanotube by floating catalyst chemical vapour deposition

机译:浮催化剂化学气相沉积选择性合成金属和半导体碳纳米管

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摘要

Selective synthesis of both metallic and semi-conducting single-walled carbon nanotubes (SWCNTs) has been performed using floating catalyst chemical vapour deposition (FC-CVD). It was observed that partial pressure of hydrogen determined the selectivity of SWCNTs being predominantly metallic at lower hydrogen concentration (20 vol%) and predominantly semiconducting at higher hydrogen concentration (80 vol%). The qualitative and quantitative analysis on type of SWCNTs was performed based on UV-vis-NIR, Raman spectra at different wavelengths and SWCNT-based field effect transistor device performance. Transmission electron microscopy was used to get diameter distribution of SWCNTs. Detailed analysis showed that the type of SWCNTs was decided at the nucleation stage that was governed by the collision frequency between hydrogen molecules and iron nanoparticles.
机译:使用浮动催化剂化学气相沉积(FC-CVD)进行了金属和半导体单壁碳纳米管(SWCNTS)的选择性合成。 观察到氢的分压确定SWCNT的选择性主要是金属在较低的氢浓度(20体积%)中,并且在较高的氢浓度下主要是半导体(80体积%)。 基于UV-Vis-NIR,不同波长的拉曼光谱和基于SWCNT基场效应晶体管器件性能的定性和定量分析进行了基于UV-VIR-NIR。 透射电子显微镜用于获得SWCNT的直径分布。 详细分析表明,在核分子与铁纳米粒子之间的碰撞阶段定控的成核阶段,确定了SWCNT的类型。

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