Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, 637371, Singapore.
ACS Nano. 2011 Nov 22;5(11):8760-8. doi: 10.1021/nn203472f. Epub 2011 Oct 11.
Bernal (ABA stacking order) and rhombohedral (ABC) trilayer graphene (3LG) are characterized by Raman spectroscopy. From a systematic experimental and theoretical analysis of the Raman modes in both of these 3LGs, we show that the G band, G' (2D) band, and the intermediate-frequency combination modes of 3LGs are sensitive to the stacking order of 3LG. The phonon wavevector q, that gives the double resonance Raman spectra is larger in ABC than ABA, which is the reason why we get the different Raman frequencies and their spectral widths for ABA and ABC 3LG. The weak electron-phonon interaction in ABC-stacked 3LG and the localized strain at the boundary between ABC- and ABA-stacked domains are clearly reflected by the softening of the G mode and the G' mode, respectively.
伯纳尔(ABA 堆积顺序)和菱方(ABC)三层石墨烯(3LG)的特征可以通过拉曼光谱来体现。通过对这两种 3LG 的拉曼模式进行系统的实验和理论分析,我们表明 G 带、G'(2D)带和 3LG 的中频组合模式对 3LG 的堆积顺序敏感。声子波矢 q 给出了双共振拉曼光谱,在 ABC 中比在 ABA 中更大,这就是为什么我们得到 ABA 和 ABC 3LG 的不同拉曼频率及其光谱宽度的原因。ABC 堆叠 3LG 中的弱电子-声子相互作用和 ABC-和 ABA-堆叠畴之间边界处的局部应变分别通过 G 模式和 G'模式的软化得到了清晰的体现。