首页> 外文会议>International Manufacturing Science and Engineering Conference >MULTIZONE RAPID THERMAL PROCESSING TO OVERCOME CHALLENGES IN CARBON NANOTUBE MANUFACTURING BY CHEMICAL VAPOR DEPOSITION
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MULTIZONE RAPID THERMAL PROCESSING TO OVERCOME CHALLENGES IN CARBON NANOTUBE MANUFACTURING BY CHEMICAL VAPOR DEPOSITION

机译:多区快速热过程克服了化学气相沉积法制造碳纳米管的挑战

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For the scalable production of commercial products based on vertically aligned carbon nanotubes (VACNTs), referred to as CNT forests, key manufacturing challenges must be overcome. In this work, we describe some of the main challenges currently facing CNT forest manufacturing, along with how we address these challenges with our custom-built rapid thermal processing chemical vapor deposition (CVD) reactor. First, the complexity of multistep processes and reaction pathways involved in CNT growth by CVD limits the control on CNT population growth dynamics. Importantly, gas-phase decomposition of hydrocarbons, formation of catalyst particles, and catalytic growth of CNTs are typically coupled. Here, we demonstrated a decoupled recipe with independent control of each step. Second, significant run-to-run variations plague CNT growth by CVD. To improve growth consistency, we designed various measures to remove oxygen-containing molecules from the reactor, including air baking between runs, dynamic pumping down cycles, and low-pressure baking before growth. Third, real-time measurements during growth are needed for process monitoring. We implement in situ height kinetics via videography. The combination of approaches presented here has the potential to transform lab-scale CNT synthesis to robust manufacturing processes.
机译:对于可扩展生产的基于垂直排列的碳纳米管(VACNT)的商用产品(称为CNT林),必须克服关键的制造挑战。在这项工作中,我们描述了CNT森林生产目前面临的一些主要挑战,以及我们如何通过定制的快速热处理化学气相沉积(CVD)反应器解决这些挑战。首先,通过CVD参与CNT生长的多步过程和反应路径的复杂性限制了对CNT种群生长动力学的控制。重要的是,烃的气相分解,催化剂颗粒的形成和CNT的催化生长通常是耦合的。在这里,我们展示了一个分离的配方,每个步骤都可以独立控制。其次,每次运行之间的显着差异困扰着CVD导致的CNT生长。为了提高生长的一致性,我们设计了各种措施从反应器中去除含氧分子,包括两次运行之间的空气烘烤,动态抽空循环以及生长前的低压烘烤。第三,需要在成长过程中进行实时测量以进行过程监控。我们通过摄像来实现原位高度动力学。本文介绍的方法的组合具有将实验室规模的CNT合成转化为可靠的制造工艺的潜力。

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