info:eu-repo/semantics/article
Ring current effects on nuclear magnetic shielding of carbon in the benzene molecule
Fecha
2005-12Registro en:
Ferraro, Marta Beatriz; Faglioni, F.; Ligabue, A.; Pelloni, Stefano; Lazzeretti, Paolo; Ring current effects on nuclear magnetic shielding of carbon in the benzene molecule; John Wiley & Sons Ltd; Magnetic Resonance in Chemistry; 43; 4; 12-2005; 316-320
0749-1581
CONICET Digital
CONICET
Autor
Ferraro, Marta Beatriz
Faglioni, F.
Ligabue, A.
Pelloni, Stefano
Lazzeretti, Paolo
Resumen
The differential Biot-Savart law of classical electrodynamics was applied to develop a ring current model for the magnetic shielding of the carbon nucleus in benzene. It is shown that the local effect of the π currents, induced by a magnetic field normal to the molecular plane, on the σC out-of-plane shielding tensor component vanishes. However, approximately 10% of σC is due to the shielding contributions from π current density in the region of the other carbon atoms. Magnetic shielding density maps obtained via quantum mechanical procedures confirm the predictions of the classical model.