University of Belgrade - Faculty of Chemistry, Studentski trg 12-16, P.O. Box 158, 11000 Belgrade, Serbia.
Phys Chem Chem Phys. 2019 Feb 6;21(6):3250-3263. doi: 10.1039/c8cp07875k.
The effect of two types of dibenzo-fusion of pentalene in the singlet and triplet states on its molecular energies and magnetically induced ring currents was examined via density functional calculations. The isomerization energy decomposition analysis (IEDA) together with the calculated aromaticity indices (NICS(1)zz, HOMA and FLUπ), estimation of resonance energies (RE) and extra cyclic resonance energies (ECRE) via the NBO method, and the NICS-XY-scans revealed that the π-electronic system is the most important factor controlling the molecular energies. The [a,f] topology features greater delocalization, which results in two opposing effects: larger ECRE, but weaker π-bonding. The latter is mainly responsible for the higher energy of [a,f]-dibenzopentalene (DBP) (ΔEiso = 21.7 kcal mol-1), with the other effects being σ-orbital and electrostatic interactions. The reversal of energetic stability in the triplet states (ΔEiso = -10.8 kcal mol-1) mainly comes from the reduced Pauli repulsion in [a,f]-DBP, which stabilizes the unpaired spin density over the central trimethylenemethane subunit vs. the central pentalene subunit in [a,e]-DBP. Although the [a,e] topology only reduces the diatropic and paratropic currents of the elementary subunits, benzene and pentalene, the [a,f] topology also creates strong global paratropicity involving the benzene rings. Both DBP isomers are characterized by global and smaller semi-global and local diatropic currents in the triplet state.
通过密度泛函计算研究了两种二并苯并五轮烯在单重态和三重态下的影响对其分子能量和磁致环电流的影响。通过异构体化能分解分析(IEDA)以及计算的芳香性指数(NICS(1)zz、HOMA 和 FLUπ)、通过 NBO 方法估算共振能(RE)和额外环共振能(ECRE),以及 NICS-XY-扫描表明,π 电子体系是控制分子能量的最重要因素。[a,f]拓扑特征具有更大的离域化,这导致了两个相反的效果:更大的 ECRE,但较弱的π键。后者主要负责[a,f]-二并五轮烯(DBP)的较高能量(ΔEiso = 21.7 kcal mol-1),其他影响是σ-轨道和静电相互作用。三重态中能量稳定性的反转(ΔEiso = -10.8 kcal mol-1)主要来自[a,f]-DBP 中 Pauli 斥力的降低,这稳定了未配对的自旋密度,相对于[a,e]-DBP 中的中心五轮烯亚基。尽管[a,e]拓扑仅减小了基本亚基苯和五轮烯的顺磁和反磁电流,但[a,f]拓扑也产生了涉及苯环的强烈全局反磁效应。两种 DBP 异构体在三重态中均表现出全局和较小的半全局和局部顺磁电流。