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Temperature-induced transformations in hydrogenated and fluorinated single-wall carbon nanotubes studied by Raman scattering

机译:拉曼散射研究氢化和氟化单壁碳纳米管中温度诱导的转变

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摘要

Raman spectra of hydrogenated and fluorinated single-wall carbon nanotubes (SWCNTs) are measured at ambient temperature before and after heat treatment. The spectra of the as-prepared hydrogenated SWCNTs show a giant structureless band in the visible region that screens the Raman peaks related to the carbon atom vibrations. The onset of this strong band follows the excitation laser line, which is typical of hot luminescence. The intensity of the luminescence background decreases exponentially with the annealing time, while the dependence of the luminescence decay time constant on the annealing temperature is of the Arrhenius type with the activation energy E _a = 465 ± 44 meV. The luminescence background in the Raman spectra of the fluorinated SWCNTs is comparable with the Raman peak intensity and decreases exponentially with the annealing time. The dependence of the decay time constant on the temperature is again of the Arrhenius type with the activation energy E _a = 90 ± 8 meV. The appearance of hot luminescence is related to the upshift of the fundamental energy gap in functionalized SWCNTs and the structural disorder induced by random binding of hydrogen or fluorine atoms. The luminescence background disappears upon annealing in vacuum or in air after removal of hydrogen (fluorine), while the annealed samples still demonstrate large structural disorder.
机译:在热处理前后,在环境温度下测量氢化和氟化单壁碳纳米管(SWCNT)的拉曼光谱。所制备的氢化SWCNT的光谱在可见光区域显示出巨大的无结构带,该带屏蔽了与碳原子振动有关的拉曼峰。该强带的出现遵循激发激光线,这是热发光的典型特征。发光背景的强度随退火时间呈指数下降,而发光衰减时间常数对退火温度的依赖性是阿累尼乌斯类型的,其激活能E _a = 465±44 meV。氟化SWCNT的拉曼光谱中的发光背景与拉曼峰强度相当,并且随着退火时间呈指数下降。衰减时间常数对温度的依赖性又是阿伦尼乌斯类型的,其激活能E _a = 90±8 meV。热发光的出现与功能化SWCNT中基本能隙的上移以及氢或氟原子的无规结合引起的结构紊乱有关。去除氢气(氟)后,在真空中或在空气中退火后,发光背景消失,而退火后的样品仍显示出较大的结构紊乱。

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