Valiev Rashid R, Kurten Theo, Valiulina Lenara I, Ketkov Sergey Yu, Cherepanov Viktor N, Dimitrova Maria, Sundholm Dage
Department of Optics and Spectroscopy, Tomsk State University, Tomsk, 634050, Russia.
Department of Chemistry, Faculty of Science, University of Helsinki, FIN-00014, Helsinki, Finland.
Phys Chem Chem Phys. 2022 Jan 19;24(3):1666-1674. doi: 10.1039/d1cp04779e.
The magnetically induced current-density susceptibility tensor (CDT) of the lowest singlet and triplet states of the metallocenothiaporphyrins, where the metal is V, Cr, Mn, Fe, Co, Ni, Mo, Tc, Ru, or Rh, have been studied with the gauge-including magnetically induced currents (GIMIC) method. The compounds containing V, Mn, Co, Tc or Rh were studied as cations because the neutral molecules have an odd number of electrons. The calculations show that the aromatic nature of most of the studied molecules follows the Hückel and Baird rules of aromaticity. CDT calculations on the high-spin states of the neutral metallocenothiaporphyrins with V, Mn, Co, Tc or Rh also shows that these molecules follow a unified extended Hückel and Baird aromaticity orbital-count rule stating that molecules with an odd number of occupied conjugated valence orbitals are aromatic, whereas molecules with an even number of occupied conjugated orbitals are antiaromatic.
采用含规范磁诱导电流(GIMIC)方法研究了金属为V、Cr、Mn、Fe、Co、Ni、Mo、Tc、Ru或Rh的金属茂硫卟啉最低单重态和三重态的磁诱导电流密度磁化率张量(CDT)。含V、Mn、Co、Tc或Rh的化合物作为阳离子进行研究,因为中性分子具有奇数个电子。计算结果表明,大多数研究分子的芳香性遵循休克尔和贝尔德芳香性规则。对含V、Mn、Co、Tc或Rh的中性金属茂硫卟啉高自旋态的CDT计算还表明,这些分子遵循统一的扩展休克尔和贝尔德芳香性轨道计数规则,即占据共轭价轨道数为奇数的分子是芳香性的,而占据共轭轨道数为偶数的分子是反芳香性的。