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二茂铁鎓作为催化剂对浮动催化化学气相沉积合成中单壁碳纳米管手性分布的影响。

The impact of ferrocenium as a catalyst on the chiral distribution of single-walled carbon nanotubes in floating-catalyst chemical vapor deposition synthesis.

作者信息

Karakassides Anastasios, Inoue Hirotaka, Liu Peng, Xu Zhenyu, Yasin Ghulam, Jiang Hua, Kauppinen Esko I

机构信息

Department of Applied Physics, School of Science, Aalto University, Puumiehenkuja 2, 02150 Espoo, Finland.

Sumitomo Electric Industries, Ltd, 1-1-3 Shimaya, Konohana-ku, Osaka 554-0024, Japan.

出版信息

Nanoscale. 2025 May 23;17(20):12797-12809. doi: 10.1039/d5nr00297d.

DOI:10.1039/d5nr00297d
PMID:40310486
Abstract

In response to the growing demand for novel catalyst designs for the selective growth of single-walled carbon nanotubes (SWCNTs), this study explores the use of ferrocenium (the oxidized state of ferrocene) as a new catalyst precursor for the first time. Utilizing the floating-catalyst chemical vapor deposition (FC-CVD) method, SWCNTs were synthesized and characterized through analytical transmission electron microscopy selected area electron diffraction (TEM SAED) and optical techniques (Raman spectroscopy and UV-vis-NIR absorption). The introduction of ferrocenium led to an enhancement in the metallicity of the nanotubes, increasing the proportion of metallic SWCNTs to 43.1%, while also broadening the nanotube mean diameter from 1.84 nm to 2.10 nm. The key factor behind this improvement lies in the positive charge of Fe in ferrocenium, which has been shown to stabilize metallic nanotube formation. These findings highlight the pivotal role of catalyst charge in controlling SWCNT chirality and electronic properties, paving the way for more precise control in nanotube synthesis for applications in nanoelectronics and materials science.

摘要

为响应单壁碳纳米管(SWCNT)选择性生长新型催化剂设计的需求不断增长,本研究首次探索将二茂铁鎓(二茂铁的氧化态)用作新型催化剂前驱体。利用浮动催化剂化学气相沉积(FC-CVD)方法合成了SWCNT,并通过分析型透射电子显微镜选区电子衍射(TEM SAED)和光学技术(拉曼光谱和紫外-可见-近红外吸收)对其进行了表征。二茂铁鎓的引入导致纳米管金属性增强,金属性SWCNT的比例增加到43.1%,同时纳米管平均直径也从1.84纳米拓宽到2.10纳米。这种改进背后的关键因素在于二茂铁鎓中Fe的正电荷,它已被证明能稳定金属纳米管的形成。这些发现突出了催化剂电荷在控制SWCNT手性和电子性质方面的关键作用,为纳米电子学和材料科学应用中纳米管合成的更精确控制铺平了道路。

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