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Simple Dip-Coating Processfor the Synthesis of SmallDiameter Single-Walled Carbon Nanotubes—Effect of CatalystComposition and Catalyst Particle Size on Chirality and Diameter

机译:简单的浸涂工艺用于合成小直径单壁碳纳米管—催化剂的作用手性和直径的组成和催化剂粒度

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摘要

We report on a dip-coating method to prepare catalyst particles (mixture of iron and cobalt) with a controlled diameter distribution on silicon wafer substrates by changing the solution's concentration and withdrawal velocity. The size and distribution of the prepared catalyst particles were analyzed by atomic force microscopy. Carbon nanotubes were grown by chemical vapor deposition on the substrates with the prepared catalyst particles. By decreasing the catalyst particle size to below 10 nm, the growth of carbon nanotubes can be tuned from few-walled carbon nanotubes, with homogeneous diameter, to highly pure single-walled carbon nanotubes. Analysis of the Raman radial breathing modes, using three different Raman excitation wavelengths (488, 633, and 785 nm), showed a relatively broad diameter distribution (0.8–1.4 nm) of single-walled carbon nanotubes with different chiralities. However, by changing the composition of the catalyst particles while maintaining the growth parameters, the chiralities of single-walled carbon nanotubes were reduced to mainly four differenttypes, (12, 1), (12, 0), (8, 5), and (7, 5), accounting for about70% of all nanotubes.
机译:我们报道了一种浸涂法,通过改变溶液的浓度和排出速度,在硅片基板上制备具有受控直径分布的催化剂颗粒(铁和钴的混合物)。通过原子力显微镜分析制备的催化剂颗粒的尺寸和分布。通过化学气相沉积在具有制备的催化剂颗粒的基底上生长碳纳米管。通过将催化剂粒径减小到10 nm以下,可以将碳纳米管的生长从具有均匀直径的少壁碳纳米管调整到高纯度单壁碳纳米管。使用三种不同的拉曼激发波长(488、633和785 nm)对拉曼径向呼吸模式的分析显示,具有不同手性的单壁碳纳米管的直径分布相对较宽(0.8-1.4 nm)。然而,通过在保持生长参数不变的情况下改变催化剂颗粒的组成,将单壁碳纳米管的手性减少为主要四种类型(12、1),(12、0),(8、5)和(7、5),约占所有纳米管的70%。

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