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Spherical Aromaticity of Tetrahedral Pnictogens Through Off-Nucleus Isotropic Magnetic Shielding.

Muntadar A H Al-Yassiri
Published in: Chemphyschem : a European journal of chemical physics and physical chemistry (2022)
This work revealed the spherical aromaticity of some inorganic E 4 cages and their protonated E 4 H + ions (E=N, P, As, Sb, and Bi). For this purpose, we employed several evaluations like (0D-1D) nucleus independent chemical shift (NICS), multidimensional (2D-3D) off-nucleus isotropic shielding σ iso (r), and natural bond orbital (NBO) analysis. The magnetic calculations involved gauge-including atomic orbitals (GIAO) with two density functionals B3LYP and WB97XD, and basis sets of Jorge-ATZP, 6-311+G(d,p), and Lanl2DZp. The Jorge-ATZP basis set showed the best consistency. Our findings disclosed non-classical aromatic characters in the above molecules, which decreased from N to Bi cages. Also, the results showed more aromaticity in E 4 than E 4 H + . The NBO analysis attributed the aromaticity in the above molecules to the residual density of the overlapping σ-bonding orbitals. So, the aromaticity in these molecules is unlike the classical aromaticity that is associated with electron delocalization. Scanning 1D σ iso (r) variation along E-E bonds indicated a lowering in the shielding trend from N to Bi cages. The 3D results showed a similar decrease in the relative volumetric diffusion of the magnetic activity, whereas the volumetric ratio of V 1ppm /V 2ppm is almost constant for all the E 4 cages.
Keyphrases
  • density functional theory
  • molecularly imprinted
  • molecular dynamics
  • electron microscopy
  • single cell
  • electron transfer