IMPMC, Université Paris 6 et 7, CNRS, IPGP, 140 rue de Lourmel, 75015 Paris, France.
J Am Chem Soc. 2010 Mar 17;132(10):3440-51. doi: 10.1021/ja909234y.
We show that Clar's theory of the aromatic sextet is a simple and powerful tool to predict the stability, the pi-electron distribution, the geometry, and the electronic/magnetic structure of graphene nanoribbons with different hydrogen edge terminations. We use density functional theory to obtain the equilibrium atomic positions, simulated scanning tunneling microscopy (STM) images, edge energies, band gaps, and edge-induced strains of graphene ribbons that we analyze in terms of Clar formulas. On the basis of their Clar representation, we propose a classification scheme for graphene ribbons that groups configurations with similar bond length alternations, STM patterns, and Raman spectra. Our simulations show how STM images and Raman spectra can be used to identify the type of edge termination.
我们表明,克拉尔的芳香六重态理论是一种简单而强大的工具,可以预测具有不同氢边缘终止的石墨烯纳米带的稳定性、π电子分布、几何形状和电子/磁性结构。我们使用密度泛函理论获得平衡原子位置,模拟扫描隧道显微镜(STM)图像,边缘能量,带隙和边缘诱导应变的石墨烯带,我们根据克拉尔公式进行分析。根据它们的克拉尔表示,我们提出了一种石墨烯带的分类方案,该方案将具有相似键长交替、STM 模式和拉曼光谱的构型进行分组。我们的模拟表明,STM 图像和拉曼光谱如何可用于识别边缘终止的类型。