Chemistry and Physics of Materials Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur P.O, Bangalore-560 064, India.
Phys Chem Chem Phys. 2011 Dec 14;13(46):20627-36. doi: 10.1039/c1cp22104c. Epub 2011 Sep 21.
We have studied the topological and local aromaticity of BN-substituted benzene, pyrene, chrysene, triphenylene and tetracene molecules. The nucleus-independent chemical shielding (NICS), harmonic oscillator model of aromaticity (HOMA), para-delocalization index (PDI) and aromatic fluctuation index (FLU) have been calculated to quantify aromaticity in terms of magnetic and structural criteria. We find that charge separations due to the introduction of heteroatoms largely affect both the local and topological aromaticity of these molecules. Our studies show that the presence of any kind of heteroatom in the ring not only reduces the local delocalization in the six membered ring, but also affects strongly the topological aromaticity. In fact, the relative orders of the topological and local aromaticity depend strongly on the position of the heteroatoms in the structure. In general, more ring shared BN containing molecules are less aromatic than the less ring shared BN molecules. In addition our results provide evidence that the structural stability of the molecule is dominated by the σ bond rather than the π bond.
我们研究了 BN 取代苯、并五苯、苝、三联苯和四环[4.4.0.12,5.17,10.13,9]癸烷分子的拓扑和局部芳香性。使用核独立化学位移(NICS)、芳香性的谐振子模型(HOMA)、para-离域指数(PDI)和芳香性波动指数(FLU)等指标,从磁学和结构标准来量化这些分子的芳香性。我们发现,杂原子的引入导致的电荷分离,极大地影响了这些分子的局部和拓扑芳香性。我们的研究表明,环中任何杂原子的存在不仅降低了六元环的局部离域性,而且强烈影响了拓扑芳香性。事实上,拓扑芳香性和局部芳香性的相对顺序强烈依赖于杂原子在结构中的位置。一般来说,含有更多环共享 BN 的分子比含有较少环共享 BN 的分子的芳香性更小。此外,我们的结果提供了证据表明,分子的结构稳定性由σ键主导,而不是π键。