Santos Elizabeth
Institute of Theoretical Chemistry, Ulm University, Mez-Starck-Haus, Oberberghof 7, 89081 Ulm, Germany.
Nanomaterials (Basel). 2023 Jul 10;13(14):2038. doi: 10.3390/nano13142038.
The dynamics of a bilayer of graphene containing one mono-vacancy in the top layer has been investigated in the framework of DFTB in the absence and in the presence of water. Due to the speed of the code, we can describe details of the behavior, which are not directly accessible experimentally and cannot be treated by DFT or classical molecular dynamics. The presence of water enhances the displacement of carbon atoms in the perpendicular direction to the surface. Our results explain very well a variety of experimental findings. In particular, the stabilization of the Jahn-Teller distortion by hydrogenation of one of the carbon atoms at the edge of a mono-vacancy has been elucidated. This work is the first analysis of the behavior of a graphene vacancy at room temperature in contact with water based on a quantum mechanical molecular dynamics method, where both graphene and solvent are treated at the same level.
在有无水存在的情况下,利用密度泛函紧束缚方法(DFTB)研究了顶层含有一个单空位的双层石墨烯的动力学。由于该计算代码的速度,我们能够描述其行为细节,这些细节无法通过实验直接获取,也不能用密度泛函理论(DFT)或经典分子动力学来处理。水的存在增强了碳原子在垂直于表面方向上的位移。我们的结果很好地解释了各种实验发现。特别是,阐明了通过单空位边缘的一个碳原子氢化来稳定 Jahn-Teller 畸变的情况。这项工作是首次基于量子力学分子动力学方法对室温下与水接触的石墨烯空位行为进行分析,其中石墨烯和溶剂都在同一水平上进行处理。