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Chirality manifestation in elastic coupling between the layers of double-walled carbon nanotubes

机译:手性表现在弹性耦合层之间的双壁碳纳米管

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The search for new relatively easy physicochemical methods for the structural identification of carbon nanotubes represents a key challenge. Here, analyzing the experimental data on double-walled carbon nanotubes (DWCNTs) obtained by us and taken from the literature, we have expressed the magnitude of elastic coupling between two tubular walls forming a DWCNT as a simple function dependent not only on DWCNT diameters but also on the difference between the chirality angles of the constituent nanotubes. To get this quite unexpected result, which allows us to relate more precisely the structural parameters of a DWCNT with frequencies of its radial breathing-like modes (RBLM), we have developed a new model for the RBLM dynamics that takes into account a possible deposition of water molecules from ambient air onto the DWCNT surface. The model constructed allows us to predict the higher prevalence of DWCNTs comprising two walls with identical handedness. The application of the results obtained for the identification of DWCNTs is also considered.
机译:寻找新的相对容易的物化的结构识别的方法碳纳米管是一个关键的挑战。在这里,分析实验数据双壁碳纳米管(DWCNTs)获得通过美国和来自文献,我们表示弹性联轴节的大小两个管墙之间形成DWCNT作为简单的函数不仅依赖DWCNT直径也之间的区别手性角组成的纳米管。得到意想不到的结果,它允许我们联系更精确的结构DWCNT频率的参数径向breathing-like模式(RBLM)开发了一种新的RBLM动力学模型考虑一个可能沉积的水从环境空气到DWCNT分子表面。预测DWCNTs患病率越高由两个墙相同的用手习惯。应用程序的结果识别DWCNTs也被认为是。

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