Choi Boogeon, Jeong Gyouil, Ahn Seongjin, Lee Hankyul, Jang Yunsu, Park Baekwon, Bechtel Hans A, Hong Byung Hee, Min Hongki, Kim Zee Hwan
Department of Chemistry, Seoul National University, 08826, Seoul, Korea.
Department of Physics, Chungbuk National University, 28644, Cheongju, Korea.
J Phys Chem Lett. 2023 Sep 14;14(36):8157-8164. doi: 10.1021/acs.jpclett.3c01593. Epub 2023 Sep 5.
We employed infrared scattering-type scanning near-field optical microscopy (IR-sSNOM) to study surface plasmon polaritons (SPPs) in trilayer graphene (TLG). Our study reveals systematic differences in near-field IR spectra and SPP wavelengths between Bernal (ABA) and rhombohedral (ABC) TLG domains on SiO, which can be explained by stacking-dependent intraband conductivities. We also observed that the SPP reflection profiles at ABA-ABC boundaries could be mostly accounted for by an idealized domain boundary defined by the conductivity discontinuity. However, we identified distinct shapes in the SPP profiles at the edges of the ABA and ABC TLG, which cannot be solely attributed to idealized edges with stacking-dependent conductivities. Instead, this can be explained by the presence of various edge structures with local conductivities differing from those of bulk TLGs. Our findings unveil a new structural element that can control SPP, and provide insights into the structures and electronic states of the edges of few-layer graphene.
我们采用红外散射型扫描近场光学显微镜(IR-sSNOM)来研究三层石墨烯(TLG)中的表面等离激元极化激元(SPP)。我们的研究揭示了在SiO₂上的伯纳尔(ABA)和菱面体(ABC)TLG畴之间近场红外光谱和SPP波长的系统差异,这可以通过与堆叠相关的带内电导率来解释。我们还观察到,ABA-ABC边界处的SPP反射轮廓大多可以由由电导率不连续性定义的理想化畴边界来解释。然而,我们在ABA和ABC TLG边缘的SPP轮廓中发现了不同的形状,这不能仅仅归因于具有与堆叠相关电导率的理想化边缘。相反,这可以通过存在各种边缘结构来解释,这些边缘结构的局部电导率与体相TLG的电导率不同。我们的发现揭示了一种可以控制SPP的新结构元素,并为少层石墨烯边缘的结构和电子态提供了见解。