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观察具有氢终止锯齿边缘的石墨烯纳米带的拉曼 g-峰分裂。

Observation of Raman g-peak split for graphene nanoribbons with hydrogen-terminated zigzag edges.

机构信息

Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences , Beijing 100190, China.

出版信息

Nano Lett. 2011 Oct 12;11(10):4083-8. doi: 10.1021/nl201387x. Epub 2011 Sep 9.

Abstract

Raman scattering of individual hydrogen-terminated zigzag-edged graphene nanoribbons (Z-GNRs) was studied with focus on the G-peak. In addition to the bulk graphene G-peak appearing at ∼1594 cm(-1) (G(+)), an edge-related G-peak at ∼1583 cm(-1) (G(-)) was observed for Z-GNRs. This additional Raman vibrational mode originates from the zigzag edges where localized metallic edge states are present. The relative intensity ratio G(-)/G(+) displays a strong dependence on the ribbon width (W). It increases gradually with decreasing W, and the G(+) finally vanishes at W = 5(±3) nm. Polarized Raman scattering was also employed to confirm the four-fold symmetry of the split TO modes, and the results are in good agreement with previous theoretical predictions. Our work offers the first direct experimental evidence to confirm the validity of predicted Raman scattering of GNRs.

摘要

采用喇曼散射法对单个氢终止的锯齿形边缘石墨烯纳米带(Z-GNR)进行了研究,重点研究了 G 峰。除了出现在约 1594cm(-1)(G(+))的体石墨烯 G 峰外,Z-GNR 还观察到了一个位于约 1583cm(-1)(G(-))的与边缘相关的 G 峰。这种额外的拉曼振动模式源于存在局域金属边缘态的锯齿形边缘。G(-)/G(+)的相对强度比强烈依赖于带的宽度(W)。随着 W 的减小,它逐渐增加,当 W = 5(±3)nm 时,G(+)最终消失。还采用偏振拉曼散射来证实分裂的 TO 模式的四重对称性,结果与以前的理论预测非常吻合。我们的工作提供了第一个直接的实验证据,证实了 GNRs 预测的拉曼散射的有效性。

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