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Specific features of low-frequency vibrational dynamics and low-temperature heat capacity of double-walled carbon nanotubes

机译:双壁碳纳米管的低频振动动力学和低温热容的特定特征

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A continuous model has been constructed for low-frequency dynamics of a double-walled carbon nanotube. The formation of the low-frequency part of the phonon spectrum of a double-walled nanotube from phonon spectra of its constituent single-walled nanotubes has been considered in the framework of the proposed approach. The influence of the environment on the phonon spectrum of a single double-walled carbon nanotube has been analyzed. A combined method has been proposed for estimating the coefficients of the van der Waals interaction between the walls of the nanotube from the spectroscopic data and the known values of the elastic moduli of graphite. The low-temperature specific heat has been calculated for doublewalled carbon nanotubes, which in the field of applicability of the model (T < 35 K) is substantially less than the sum of specific heats of two individual single-walled nanotubes forming it.
机译:为双壁碳纳米管的低频动力学建立了一个连续模型。在所提出的方法的框架内,已经考虑了从其组成的单壁纳米管的声子谱形成双壁纳米管的声子谱的低频部分。分析了环境对单个双壁碳纳米管声子谱的影响。已经提出了一种组合方法,用于根据光谱数据和石墨的弹性模量的已知值来估计纳米管壁之间的范德华相互作用的系数。已经计算出了双壁碳纳米管的低温比热,在模型的适用范围内(T <35 K)大大小于形成它的两个单壁碳纳米管的比热之和。

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