Singh Sandeep Kumar, Neek-Amal M, Peeters F M
Department of Physics, University of Antwerpen, Groenenborgerlaan 171, B-2020 Antwerpen, Belgium.
J Chem Phys. 2014 Feb 21;140(7):074304. doi: 10.1063/1.4865414.
The electronic properties of graphene nano-flakes (GNFs) with different edge passivation are investigated by using density functional theory. Passivation with F and H atoms is considered: C(N(c)) X(N(x)) (X = F or H). We studied GNFs with 10 < Nc < 56 and limit ourselves to the lowest energy configurations. We found that: (i) the energy difference Δ between the highest occupied molecular orbital and the lowest unoccupied molecular orbital decreases with Nc, (ii) topological defects (pentagon and heptagon) break the symmetry of the GNFs and enhance the electric polarization, (iii) the mutual interaction of bilayer GNFs can be understood by dipole-dipole interaction which were found sensitive to the relative orientation of the GNFs, (iv) the permanent dipoles depend on the edge terminated atom, while the energy gap is independent of it, and (v) the presence of heptagon and pentagon defects in the GNFs results in the largest difference between the energy of the spin-up and spin-down electrons which is larger for the H-passivated GNFs as compared to F-passivated GNFs. Our study shows clearly the effect of geometry, size, termination, and bilayer on the electronic properties of small GNFs. This study reveals important features of graphene nano-flakes which can be detected using Raman spectroscopy.
采用密度泛函理论研究了具有不同边缘钝化的石墨烯纳米片(GNFs)的电子性质。考虑了用F和H原子进行钝化:C(N(c)) X(N(x)) (X = F或H)。我们研究了10 < Nc < 56的GNFs,并将研究局限于最低能量构型。我们发现:(i)最高占据分子轨道和最低未占据分子轨道之间的能量差Δ随Nc减小,(ii)拓扑缺陷(五边形和七边形)破坏了GNFs的对称性并增强了电极化,(iii)双层GNFs的相互作用可以通过偶极 - 偶极相互作用来理解,该相互作用对GNFs的相对取向敏感,(iv)永久偶极取决于边缘终止原子,而能隙与之无关,以及(v)GNFs中七边形和五边形缺陷的存在导致自旋向上和自旋向下电子能量之间的最大差异,与F钝化的GNFs相比,H钝化的GNFs的这种差异更大。我们的研究清楚地表明了几何形状、尺寸、终止和双层对小GNFs电子性质的影响。这项研究揭示了可以用拉曼光谱检测到的石墨烯纳米片的重要特征。