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Excitation Energy Dependent Raman Signatures of ABA- and ABC-stacked Few-layer Graphene

机译:ABA和ABC堆叠的几层石墨烯的激发能依赖性拉曼光谱

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The dependence of the Raman spectrum on the excitation energy has been investigated for ABA-and ABC- stacked few-layer graphene in order to establish the fingerprint of the stacking order and the number of layers, which affect the transport and optical properties of few-layer graphene. Five different excitation sources with energies of 1.96, 2.33, 2.41, 2.54 and 2.81?eV were used. The position and the line shape of the Raman 2D, G*, N, M, and other combination modes show dependence on the excitation energy as well as the stacking order and the thickness. One can unambiguously determine the stacking order and the thickness by comparing the 2D band spectra measured with 2 different excitation energies or by carefully comparing weaker combination Raman modes such as N, M, or LOLA modes. The criteria for unambiguous determination of the stacking order and the number of layers up to 5 layers are established.
机译:已研究了ABA和ABC堆叠的几层石墨烯的拉曼光谱对激发能的依赖性,以建立堆叠顺序和层数的指纹图谱,这些指纹图谱影响了几层石墨的传输和光学性质。层石墨烯。使用了五个不同的激发源,其能量分别为1.96、2.33、2.41、2.54和2.81?eV。拉曼2D,G *,N,M和其他组合模式的位置和线形显示出对激发能以及堆叠顺序和厚度的依赖性。通过比较用2种不同激发能测得的2D谱带或仔细比较较弱的组合拉曼模式(如N,M或LOLA模式),可以明确确定堆积顺序和厚度。建立了明确确定堆叠顺序和最多5层的层数的标准。

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