State Key Laboratory of Superhard Materials, Jilin University, Changchun 130012, People's Republic of China.
Phys Chem Chem Phys. 2010 Sep 7;12(33):9839-44. doi: 10.1039/c003708g. Epub 2010 Jun 8.
A family of small graphene patches, i.e., rectangular polyaromatic hydrocarbons (PAHs), that have both zigzag and armchair edges is investigated to establish their ground state electronic structure. Broken symmetry density functional theory (DFT) and plane wave DFT were used to characterize the onset of diradical character via relative energies of open-shell and closed-shell singlet states. The perfect pairing (PP) active space approximation of coupled cluster theory was used to characterize diradical character on the basis of promotion of electrons from occupied to unoccupied molecular orbitals. The role of zigzag and armchair edges in the formation of open-shell singlet states is elucidated. In particular, it is found that elongation of the zigzag edge results in an increase of diradical character whereas elongation of the arm chair edge leads to a decrease of diradical character. Analysis of orbitals from PP calculations suggests that diradical states are formally Mobius aromatic multiconfigurational systems.
研究了一族小的石墨烯补丁,即具有锯齿形和扶手椅边缘的矩形多环芳烃 (PAH),以确定其基态电子结构。使用非对称密度泛函理论 (DFT) 和平面波 DFT 通过开壳和闭壳单线态的相对能量来表征双自由基特征的出现。使用耦合簇理论的完美配对 (PP) 活性空间逼近基于从占据轨道到未占据分子轨道的电子激发来表征双自由基特征。阐明了锯齿形和扶手椅边缘在形成开壳单线态中的作用。特别是,发现锯齿形边缘的伸长导致双自由基特征的增加,而扶手椅边缘的伸长导致双自由基特征的减少。来自 PP 计算的轨道分析表明,双自由基态是正式的莫比乌斯芳香多组态系统。