Radenković Slavko, Kojić Jelena, Petronijević Jelena, Antić Marija
Faculty of Science, University of Kragujevac , 12 Radoja Domanovića, 34000 Kragujevac, Serbia.
J Phys Chem A. 2014 Dec 11;118(49):11591-601. doi: 10.1021/jp507309m. Epub 2014 Dec 1.
The effect of benzo-annelation on the local aromaticity of the central ring of acridine (1), 9H-carbazole (2), dibenzofuran (3), and dibenzothiophene (4) was analyzed by means of the energy effects (ef), pairwise energy effects (pef), multicenter delocalization index (MCI), electron density at ring critical points (ρ(r(C))), harmonic oscillator model of aromaticity (HOMA), and nucleus independent chemical shifts (NICS). According to energetic, electron delocalization, and geometrical indices, angular benzo-annelation increases, whereas linear benzo-annelation decreases, the extent of the local aromaticity of the central ring containing heteroatoms. The local aromaticity of the central heterocyclic ring in the examined molecules can significantly vary by applying different modes of benzo-annelation. The NICS values do not always support the results obtained by the other aromaticity indices and, in some cases, lead to completely opposite conclusions.
通过能量效应(ef)、成对能量效应(pef)、多中心离域指数(MCI)、环临界点处的电子密度(ρ(r(C)))、芳香性的谐振子模型(HOMA)和核独立化学位移(NICS),分析了苯并稠合对吖啶(1)、9H-咔唑(2)、二苯并呋喃(3)和二苯并噻吩(4)中心环局部芳香性的影响。根据能量、电子离域和几何指数,角型苯并稠合增加,而线型苯并稠合降低含杂原子中心环的局部芳香性程度。通过应用不同的苯并稠合模式,所研究分子中中心杂环的局部芳香性会有显著变化。NICS值并不总是支持通过其他芳香性指数获得的结果,在某些情况下,会得出完全相反的结论。