Rauhalahti Markus, Taubert Stefan, Sundholm Dage, Liégeois Vincent
Department of Chemistry, University of Helsinki, P.O. Box 55, FIN-00014 Helsinki, Finland.
Laboratoire de Chimie Théorique (LCT), Unité de Chimie-Physique Théorique et Structurale (UCPTS), University of Namur, Rue de Bruxelles, 61, B-5000 Namur, Belgium.
Phys Chem Chem Phys. 2017 Mar 8;19(10):7124-7131. doi: 10.1039/c7cp00194k.
Magnetically induced current density susceptibilities and ring-current strengths have been calculated for neutral and doubly charged persubstituted benzenes CX and CX with X = F, Cl, Br, I, At, SeH, SeMe, TeH, TeMe, and SbH. The current densities have been calculated using the gauge-including magnetically induced current (GIMIC) method, which has been interfaced to the Gaussian electronic structure code rendering current density calculations using effective core potentials (ECP) feasible. Relativistic effects on the ring-current strengths have been assessed by employing ECP calculations of the current densities. Comparison of the ring-current strengths obtained in calculations on CAt and CAt using relativistic and non-relativistic ECPs show that scalar relativistic effects have only a small influence on the ring-current strengths. Comparisons of the ring-current strengths and ring-current profiles show that the CI, CAt, C(SeH), C(SeMe), C(TeH), C(TeMe), and C(SbH) dications are doubly aromatic sustaining spatially separated ring currents in the carbon ring and in the exterior of the molecule. The CI radical cation is also found to be doubly aromatic with a weaker ring current than obtained for the dication.
已针对中性和双电荷全取代苯CX和CX(其中X = F、Cl、Br、I、At、SeH、SeMe、TeH、TeMe和SbH)计算了磁感应电流密度磁化率和环电流强度。使用包含规范的磁感应电流(GIMIC)方法计算电流密度,该方法已与高斯电子结构代码接口,使得使用有效核势(ECP)进行电流密度计算变得可行。通过对电流密度进行ECP计算评估了相对论效应对环电流强度的影响。使用相对论性和非相对论性ECP对CAt和CAt进行计算所得环电流强度的比较表明,标量相对论效应仅对环电流强度有较小影响。环电流强度和环电流分布的比较表明,CI、CAt、C(SeH)、C(SeMe)、C(TeH)、C(TeMe)和C(SbH)双阳离子具有双芳香性,在碳环和分子外部维持空间分离的环电流。还发现CI自由基阳离子具有双芳香性,但其环电流比双阳离子的环电流弱。