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Micro-Raman scattering of selenium-filled double-walled carbonudnanotubes: Temperature study

机译:硒填充双壁碳的微喇曼散射纳米管:温度研究

摘要

Selenium-filled double-walled carbon nanotubes Se@DWNT have been studied by high resolution transmission electron microscopy HRTEM and micro-Raman spectroscopy in the temperature interval from 80 to 600 K employing 785 nm excitation wavelength. The temperature dependences of the dominant bands G-band and G-band are analyzed in terms of the model developed by Klemens Phys. Rev. 148, 845 1966, Hart et al. Phys. Rev. B 1, 638 1970, Cowley J. Phys. France 26, 659 1965 and extended by Balkanski et al. Phys. Rev. B 26, 1928 1983 for anharmonic decay of optical phonons. The findings were compared to analogous study for empty double-walled carbon nanotubes DWNTs. The DWNT interatomic force constant modification as a result of the presence of the Se atoms inside the tubes is revealed through larger anharmonicity constants describing the temperature dependences of the G-band and the inner tube tangential modes G-band
机译:硒填充的双壁碳纳米管Se @ DWNT已通过高分辨率透射电子显微镜HRTEM和显微拉曼光谱在785 nm激发波长下于80至600 K的温度范围内进行了研究。根据Klemens Phys开发的模型分析了主带G波段和G波段的温度依赖性。 Hart等,Rev.148,845 1966。物理Rev.B 1,638 1970,Cowley J.Phys。法国26,659 1965,由Balkanski等人扩展。物理修订版B 26,1928年1983年,关于光子的非谐衰减。将研究结果与空双壁碳纳米管DWNT的类似研究进行了比较。管中存在Se原子导致的DWNT原子间常数修正通过更大的非谐常数来揭示,该常数描述了G带和内管切向模式G带的温度依赖性

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