Key Laboratory of Materials Physics, Institute of Solid State Physics, Chinese Academy of Sciences, Hefei 230031, China.
J Chem Phys. 2013 Nov 21;139(19):194708. doi: 10.1063/1.4832040.
By density functional theory calculations, the scanning tunneling microscopy (STM) images of various hydrogen clusters adsorbed on bilayer-graphene are systematically simulated. The hydrogen configurations of the STM images observed in the experiments have been thoroughly figured out. In particular, two kinds of hydrogen dimers (ortho-dimer, para-dimer) and two kinds of tetramers (tetramer-A, -B) are determined to be the hydrogen configurations corresponding to the ellipsoidal-like STM images with different structures and sizes. One particular hexamer (hexamer-B) is the hydrogen configuration generating the star-like STM images. For each hydrogen cluster, the simulated STM images show unique voltage-dependent features, which provides a feasible way to determine hydrogen adsorption states on graphene or graphite surface in the experiments by varying-voltage measurements. Stability analysis proves that the above determined hydrogen configurations are quite stable on graphene, hence they are likely to be detected in the STM experiments. Consequently, through systematic analysis of the STM images and the stability of hydrogen clusters on bilayer graphene, many experimental observations have been consistently explained.
通过密度泛函理论计算,系统地模拟了各种氢团簇在双层石墨烯上吸附的扫描隧道显微镜(STM)图像。实验中观察到的 STM 图像的氢构型已经被彻底弄清楚了。特别是,两种氢二聚体(邻位二聚体,对位二聚体)和两种四聚体(四聚体-A,-B)被确定为与具有不同结构和尺寸的椭圆形 STM 图像相对应的氢构型。一种特殊的六聚体(六聚体-B)是产生星状 STM 图像的氢构型。对于每个氢团簇,模拟的 STM 图像显示出独特的电压依赖性特征,这为通过变压测量在实验中确定石墨烯或石墨表面上的氢吸附状态提供了一种可行的方法。稳定性分析证明,上述确定的氢构型在石墨烯上非常稳定,因此它们很可能在 STM 实验中被检测到。因此,通过对双层石墨烯上氢团簇的 STM 图像和稳定性进行系统分析,许多实验观察结果得到了一致的解释。