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Second-order overtone and combination raman modes of graphene layers in the range of 1690-2150 cm-1

机译:石墨烯层的二阶泛音和组合拉曼模式,范围为1690-2150 cm-1

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Though graphene has been intensively studied by Raman spectroscopy, in this letter, we report a study of the second-order overtone and combination Raman modes in a mostly unexplored frequency range of 1690-2150 cm-1 in nonsuspended commensurate (AB-stacked), incommensurate (folded) and suspended graphene layers. On the basis of the double resonance theory, four dominant modes in this range have been assigned to (i) the second order out-of-plane transverse mode (2oTO or M band), (ii) the combinational modes of in-plane transverse acoustic mode and longitudinal optical mode (iTA+LO), (iii) in-plane transverse optical mode and longitudinal acoustic mode (iTO+LA), and (iv) longitudinal optical mode and longitudinal acoustic mode (LO+LA). Differing from AB-stacked bilayer graphene or few layer graphene, single layer graphene shows the disappearance of the M band. Systematic analysis reveals that interlayer interaction is essential for the presence (or absence) of the M band, whereas the substrate has no effect on the presence (or absence) of the M band. Dispersive behaviors of these new Raman modes in graphene have been probed by laser excitation energy-dependent Raman spectroscopy. It is found that the appearance of the M band strictly depends on the AB stacking, which could be used as a fingerprint for AB-stacked bilayer graphene. This work expands upon the unique and powerful abilities of Raman spectroscopy to study graphene and provides another effective way to probe phonon dispersion, electron-phonon coupling, and to exploit the electronic band structure of graphene layers.
机译:尽管石墨烯已经通过拉曼光谱法进行了深入研究,但在本函中,我们报道了在未悬垂的同伴(AB堆叠)中,在未开发的1690-2150 cm-1频率范围内对二阶泛音和组合拉曼模式进行的研究,不相称的(折叠的)和悬浮的石墨烯层。根据双共振理论,该范围内的四个主导模式已分配给(i)二阶面外横向模式(2oTO或M波段),(ii)面内横向组合模式声学模式和纵向光学模式(iTA + LO),(iii)面内横向光学模式和纵向声学模式(iTO + LA),以及(iv)纵向光学模式和纵向声学模式(LO + LA)。与AB堆叠的双层石墨烯或几层石墨烯不同,单层石墨烯显示M带消失。系统分析表明,层间相互作用对于M带的存在(或不存在)至关重要,而底物对M带的存在(或不存在)没有影响。这些新的拉曼模式在石墨烯中的色散行为已通过激光激发能量依赖性拉曼光谱进行了探究。发现M带的出现严格取决于AB堆叠,其可以用作AB堆叠的双层石墨烯的指纹。这项工作扩展了拉曼光谱学研究石墨烯的独特而强大的能力,并提供了另一种有效的方法来探测声子弥散,电子-声子耦合以及利用石墨烯层的电子能带结构。

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