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首页> 外文期刊>Journal of Physics. Condensed Matter >Temperature effects on the Raman spectra of graphenes: Dependence on the number of layers and doping
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Temperature effects on the Raman spectra of graphenes: Dependence on the number of layers and doping

机译:温度对石墨烯拉曼光谱的影响:取决于层数和掺杂

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摘要

Temperature effects on the various features in the Raman spectra of several graphene samples and graphene nanoribbons have been investigated over the temperature range 77-573 K. The temperature coefficient of the G and 2D band frequencies are found to depend on the number of layers, the former decreasing with the increase in the number of layers. The number of layers also affects the temperature coefficients of the FWHMs of these bands. Doping of graphene affects these Raman features significantly. The defect-related bands D and D′ bands are not sensitive to the number of layers or doping. We can understand the observed temperature effects on the basis of electron-phonon coupling, thermal expansion and anharmonic phonon-phonon interactions.
机译:在77-573 K的温度范围内,研究了温度对几种石墨烯样品和石墨烯纳米带的拉曼光谱中各种特征的影响。发现G和2D频带频率的温度系数取决于层数,前者随着层数的增加而减少。层数也会影响这些频带的FWHM的温度系数。石墨烯的掺杂会显着影响这些拉曼特征。与缺陷有关的带D和D'带对层数或掺杂不敏感。我们可以基于电子-声子耦合,热膨胀和非谐声子-声子相互作用来了解观察到的温度效应。

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