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Raman spectroscopy of SWNTs produced by a XeCl excimer laser ablation at high temperatures

机译:XeCl准分子激光烧蚀在高温下产生的单壁碳纳米管的拉曼光谱

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Synthesis of single-wall carbon nanotubes (SWNTs) was carried out by an ablation method using a XeCl excimer laser. It was irradiated onto a graphite target containing Co and Ni at the temperatures of 1073, 1173, 1273, 1373, 1473, 1523 and 1623 K under the atmosphere (0.1 MPa) of Ar gas with the flow rate of 12 ml/min. The measurement by a scanning/transmission electron microscope and Raman spectroscopy found the formation of SWNTs with the diameter of about 1.3 nm and the length of about 2 μm in ablated carbonaceous soot. The ratio of peak intensity of 1590 cm~(-1) (G band) to that of 1335 cm~(-1) (D band) in the high frequency Raman spectra increased with increasing the ambient temperature. The radial breathing mode (RBM) in the low frequency Raman spectra shows that the mean diameter of SWNTs increased with increasing the ambient temperature.
机译:使用XeCl准分子激光通过烧蚀法进行单壁碳纳米管(SWNTs)的合成。在Ar气气氛(0.1MPa)下,以12ml / min的流速将其以1073,1173、1273、1373、1473、1523和1623K的温度照射到含有Co和Ni的石墨靶上。通过扫描/透射电子显微镜和拉曼光谱法的测量发现,在烧蚀的碳质烟灰中形成了直径约1.3nm,长度约2μm的SWNT。拉曼光谱的峰值强度在1590 cm〜(-1)(G带)与1335 cm〜(-1)(D带)的比值随环境温度的升高而增加。低频拉曼光谱中的径向呼吸模式(RBM)表明,单壁碳纳米管的平均直径随环境温度的升高而增加。

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