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Vibrational spectra and phonon dispersion analysis of a single-walled zigzag carbon nanotube: A first principles study

机译:单壁之字形碳纳米管的振动光谱和声子色散分析:第一个原理研究

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This paper reports a vibrational spectroscopic study on a zigzag single-walled carbon nanotube (SWCNT) using the first-principles method based on density functional theory (DFT). The most suitable exchange correlation functional for DFT analysis was determined by comparing the predicted value of band gap of the SWCNT under study with the experimental value reported in the literature. General gradient approximation functional in combination with revised Perdew-Burke-Ernzerh sub-functional was found to give the best results. Using this optimum combination, phonon density of states and phonon dispersion curves have been determined. The analysis of results obtained focuses on symmetry considerations, group theory analysis, segregation of Raman active and infrared (IR) active vibrational modes and interpretation of the Raman and IR spectra obtained. The earlier approaches to the problem rely upon the zone folding technique and force constant models in which structural relaxation factor is not taken care of. An ab initio approach has been adopted by the authors in this work, which is advantageous as it neither depends on some predefined parameter nor does it ignore the structural relaxation factor. Analysis of the Raman spectrum reveals some additional peaks other than the commonly known radial breathing mode, D, G, and G' bands in the SWCNT spectra, which have been recently reported to be observed experimentally also. Similarly, the theoretically developed IR spectrum for the simulated SWCNT is also in agreement with experimental observations. The methodology presented thus provides a very useful and novel simulation route to predict the vibrational modes, Raman spectra, and IR spectra of SWCNTs theoretically.
机译:本文采用基于密度泛函理论(DFT)的第一原理方法对之字形单壁碳纳米管(SWCNT)进行了振动光谱研究。通过将研究中的SWCNT的带隙预测值与文献中报道的实验值进行比较,可以确定最适合DFT分析的交换相关函数。发现将一般的梯度近似函数与修正的Perdew-Burke-Ernzerh子函数结合使用可获得最佳效果。使用这种最佳组合,可以确定状态的声子密度和声子色散曲线。所得结果的分析集中在对称性考虑因素,群论分析,拉曼主动和红外(IR)主动振动模式的分离以及对拉曼和红外光谱的解释上。解决该问题的较早方法依赖于区域折叠技术和力常数模型,在这种模型中并未考虑结构松弛因子。作者在工作中采用了从头开始的方法,这是有利的,因为它既不依赖于某些预定义的参数,也不忽略结构弛豫因子。对拉曼光谱的分析显示,除了众所周知的径向呼吸模式,SWCNT光谱中的D,G和G'谱带以外,还有其他一些峰,最近据报道也已通过实验观察到。同样,理论上为模拟的SWCNT开发的IR光谱也与实验观察结果一致。因此,所提出的方法提供了一种非常有用且新颖的模拟途径,可以从理论上预测SWCNT的振动模式,拉曼光谱和IR光谱。

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