Kharlamova Marianna V, Kramberger Christian
Institute of Materials Chemistry, Vienna University of Technology, Getreidemarkt 9/BC/2, 1060 Vienna, Austria.
Moscow Institute of Physics and Technology, Institutskii Pereulok 9, 141700 Dolgoprudny, Russia.
Nanomaterials (Basel). 2021 Nov 6;11(11):2984. doi: 10.3390/nano11112984.
We have investigated the effects of temperature, diameter and metal catalyst type on the growth of inner nanotubes inside metallocene-filled single-walled carbon nanotubes (SWCNTs). The effects on the yield of different chiralities of inner nanotubes were scrutinized by multifrequency Raman spectroscopy. The investigated diameters range from ~0.7 to 1.3 nm and comprise 36 distinct chiralities. For all three investigated metals (Ni, Co, Fe), there is a linear correlation of growth temperature with nanotube diameter. The common slope for these metals is found to be 40.5 °C/Å. The temperature difference between the largest and the smallest diameter tubes amounts to ~230 °C for all three precursors. The growth temperatures are offset by 34 °C from Ni to Co and another 28 °C from Co to Fe. The quantified correlations of temperature, diameter and metal catalyst type provide the basis for engineering the diameter-specific growth of nanotubes.
我们研究了温度、直径和金属催化剂类型对茂金属填充的单壁碳纳米管(SWCNT)内部纳米管生长的影响。通过多频拉曼光谱仔细研究了这些因素对不同手性内部纳米管产率的影响。所研究的直径范围约为0.7至1.3纳米,包括36种不同的手性。对于所有三种研究的金属(镍、钴、铁),生长温度与纳米管直径呈线性相关。发现这些金属的共同斜率为40.5℃/埃。对于所有三种前驱体,最大直径管和最小直径管之间的温差约为230℃。生长温度从镍到钴偏移34℃,从钴到铁再偏移28℃。温度、直径和金属催化剂类型的量化相关性为设计纳米管的直径特异性生长提供了基础。