Department of Materials, University of Oxford, Parks Road, Oxford, OX1 3PH, United Kingdom.
ACS Nano. 2012 Jun 26;6(6):5680-6. doi: 10.1021/nn3017926. Epub 2012 Jun 4.
We distinguish between Bernal and rhombohedral stacked trilayer graphene using aberration-corrected high-resolution transmission electron microscopy. By using a monochromator to reduce chromatic aberration effects, angstrom resolution can be achieved at an accelerating voltage of 80 kV, which enables the atomic structure of ABC rhombohedral trilayer graphene to be unambiguously resolved. Our images of ABC rhombohedral trilayer graphene provide a clear signature for its identification. Few-layer graphene interfaces with ABC:BC:BCAB structure have also been studied, and we have determined the stacking sequence of each graphene layer and consequently the 3D structure. These results confirm that CVD-grown few-layer graphene can adopt an ABC rhombohedral stacking.
我们使用经过像差校正的高分辨率透射电子显微镜来区分伯纳尔和菱形堆积的三层石墨烯。通过使用单色器来减小色差效应,可以在 80kV 的加速电压下实现埃分辨率,从而可以明确分辨 ABC 菱形三层石墨烯的原子结构。我们对 ABC 菱形三层石墨烯的成像为其鉴定提供了明确的特征。我们还研究了具有 ABC:BC:BCAB 结构的少层石墨烯界面,并确定了每个石墨烯层的堆叠顺序,从而确定了 3D 结构。这些结果证实 CVD 生长的少层石墨烯可以采用 ABC 菱形堆积。