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Structure and Raman Spectra of C 60 and C 70 Fullerenes Encased into Single-Walled Boron Nitride Nanotubes: A Theoretical Study

机译:装入单壁氮化硼纳米管中的C 60和C 70富勒烯的结构和拉曼光谱:理论研究

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We report the structures and the nonresonant Raman spectra of hybrid systems composed of carbon fullerenes ( C 60 and C 70 ) encased within single walled boron nitride nanotube. The optimal structure of these systems are derived from total energy minimization using a convenient Lennard-Jones expression of the van der Waals intermolecular potential. The Raman spectra have been calculated as a function of nanotube diameter and fullerene concentration using the bond polarizability model combined with the spectral moment method. These results should be useful for the interpretation of the experimental Raman spectra of boron nitride nanotubes encasing C 60 and C 70 fullerenes.
机译:我们报告了由碳富勒烯(C 60和C 70)包裹在单壁氮化硼纳米管内的混合系统的结构和非共振拉曼光谱。这些系统的最佳结构是通过使用范德华力分子间势的便捷Lennard-Jones表达式从总能量最小化中得出的。使用键极化率模型结合光谱矩方法,已计算出拉曼光谱作为纳米管直径和富勒烯浓度的函数。这些结果对于解释含C 60和C 70富勒烯的氮化硼纳米管的实验拉曼光谱很有用。

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