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碳纳米管-催化剂界面在生长过程中是否清洁?

Is the Carbon Nanotube-Catalyst Interface Clean during Growth?

机构信息

Center for Multidimensional Carbon Materials (CMCM), Institute for Basic Science (IBS), Ulsan, 44919, Republic of Korea.

Department of Materials Science and Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan, 44919, South Korea.

出版信息

Small. 2022 Nov;18(47):e2204437. doi: 10.1002/smll.202204437. Epub 2022 Oct 11.

Abstract

Revealing a "true" picture of the carbon nanotube (CNT) growth front at the catalyst surface is critical to understanding the mechanism of CNT growth. If the CNT-catalyst interface is clean or messy, which will greatly affect the mechanism of controlled CNT growth, has never been properly solved either experimentally or theoretically. Here, this issue by ab initial calculation-based kinetic analysis and classical molecular dynamic (MD) simulations is revisited. It is found that the appearance of carbon chains at the CNT-catalyst interfaces or the "messy" interfaces in MD simulations is a consequence of the very short simulation time, and a "clean" CNT-catalyst interface will emerge if the simulation time is close to that in real experiments. This study reveals that, during real CNT experimental growth, a "clean" CNT-catalyst interface with zigzag, armchair, and/or kink sites dominates the growth kinetics, and therefore, the controllable CNT growth by tuning the CNT-catalyst interface is feasible.

摘要

揭示催化剂表面碳纳米管(CNT)生长前沿的“真实”图像对于理解 CNT 生长机制至关重要。如果 CNT-催化剂界面是干净的还是杂乱的,这将极大地影响受控 CNT 生长的机制,这在实验上或理论上都从未得到妥善解决。在这里,通过初步基于计算的动力学分析和经典分子动力学(MD)模拟重新研究了这个问题。结果发现,碳链出现在 CNT-催化剂界面或 MD 模拟中的“杂乱”界面是由于模拟时间非常短,如果模拟时间接近实际实验中的时间,那么将出现“干净”的 CNT-催化剂界面。这项研究表明,在实际的 CNT 实验生长过程中,具有锯齿形、扶手椅形和/或扭结位的“干净” CNT-催化剂界面主导着生长动力学,因此,通过调整 CNT-催化剂界面实现可控 CNT 生长是可行的。

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