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Temperature dependent Raman spectra of isolated suspended single-walled carbon nanotubes

机译:温度依赖孤立的拉曼光谱暂停单壁碳纳米管

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摘要

Ultralong isolated single-walled carbon nanotubes (SWCNTs) were synthesized on a SiO2/Mo mesh to fabricate long individual suspended SWCNT samples. We detected a delicately temperature dependent Raman RBM, G and G' band frequency shift and linewidth increase of these SWCNTs in the range of 240-600 K. Softening of force constants induced redshift and the mechanism of corresponding spectra linewidth evolution with temperature was analysed and compared with previously reported theories and experimental results. Temperature coefficient differences between G~ and G+ were not observed, but the linewidth broadening tendency differences of G~-and G~+ are obvious. In addition, temperature-dependent G' band evolution, including both frequency red-shifting and FWHM increase has been reported here first. These results will facilitate understanding of the second order Raman scattering process in SWCNTs. Different temperature coefficients measured on suspended and supported parts of the same SWCNT verifies the substrate's influence.
机译:超长的孤立的单壁碳纳米管(SWCNTs)是合成二氧化硅/ Mo网制造长个人SWCNT暂停样本。依赖喇曼遏制,G, G带的频率和线宽增加这些SWCNTs的转变240 - 600 K的范围。常数引起红移的机理相应的光谱谱线宽度与进化温度进行了分析和比较之前报道的理论和实验结果。G ~ - G +没有观察到,但是线宽差异的扩大趋势G ~ - G ~ +是显而易见的。与温度有关的G带进化,包括频率红移和应用据报道在这里第一次增加。结果将促进理解在SWCNTs二阶拉曼散射过程。不同温度系数测量暂停和支持的部分SWCNT相同验证基质的影响。

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