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Role of Gas-phase Reactions and Thermal Gradient Control in Carbon Nanotube Synthesis

机译:气相反应和热梯度控制在碳纳米管合成中的作用

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We investigate the role of precursor thermal rearrangement and surface catalytic reactions in the synthesis of vertically aligned carbon nanotubes (VA-CNTs) by acetylene-based, chemical vapor deposition (CVD) and demonstrate a millimeter-long growth of single-walled CNT (SWNT) without water assistance. A substrate heater was used to create an ascending temperature gradient from gas injection to catalyst substrate. Whereas temperature of catalyst substrates primarily determines their catalytic activity, it is a thermal condition of a gaseous mixture in the CVD chamber that also influence growth yield and structural features of as-grown CNTs. Employing Egloff's characterization, [1] we discuss the importance of various gas thermal zones in producing high-quality nanotubes with augmented growth efficiency. We continue to report production of millimeter-long, VA-SWNT having a mean diameter of 1.7 ± 0.7 nm, catalyzed by iron on an alumina support. Important finding is that a million of aspect ratio of SWNT arrays can be produced, without water assistance, via combined action of an ascending temperature gradient toward catalyst substrate and low partial pressures of acetylene carbon feedstock. Our results do not only emphasize the role of precursor thermal rearrangement in CNT synthesis, but also offer a practical route to the modulation of such complex phenomena for an ultrahigh-yield growth of narrow VA-SWNT.
机译:我们研究了前体热重排和表面催化反应在通过乙炔的化学气相沉积(CVD)合成垂直对准的碳纳米管(VA-CNT)的合成中的作用,并证明了单壁CNT的毫米长(SWNT )没有水援助。使用基板加热器从气体注射到催化剂底物产生上升温度梯度。催化剂底物的温度主要决定其催化活性,因此CVD室中的气态混合物的热状况,也影响了生长的CNT的生长产率和结构特征。聘用EGLOFF的表征,我们讨论了各种气体热带在生产高质量纳米管中的重要性,以增强增长效率。我们继续报告毫米长,VA-SWNT的生产平均直径为1.7±0.7nm,催化在氧化铝载体上催化。重要的发现是,通过将上升温度梯度朝向催化剂基材的组合作用和乙炔碳原料的低部分压力,可以在没有水辅助的情况下生产SWNT阵列的纵横比的纵横比。我们的结果不仅强调了前体热重排在CNT合成中的作用,而且还提供了用于调节这种复杂现象的实际途径,用于窄VA-SWNT的超高产量生长。

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