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The effects of π-electron distribution and intramolecular electric fields on the<sup>19</sup>F N.M.R. shielding in substituted perfluorobenzenes
91
Citations
20
References
1964
Year
Organic Charge-transfer CompoundHalogenationFluorine NucleiEngineeringPhysicsNatural SciencesApplied PhysicsChemical ShiftsFluorous SynthesisPhysical ChemistryIntramolecular Electric FieldsComputational ChemistryQuantum ChemistryChemistryCases Chemical ShiftsCharge Transportπ-Electron Distribution
Several workers have attempted to correlate 19F chemical shifts in fluorinated benzene derivatives with the π-electron charge densities and bond orders as calculated by the Hückel molecular orbital method. In all cases chemical shifts of the fluorine nuclei in meta and para positions to substituents could be predicted successfully, but for fluorine nuclei at ortho positions large deviations were encountered. We have shown that such ortho effects in haloperfluorobenzenes can be accounted for satisfactorily in terms of intramolecular electric field contributions.
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