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RESEARCH PRODUCT
Valence Topological Charge-Transfer Indices for Reflecting Polarity: Correction for Heteromolecules
Francisco Torrenssubject
Steric effectsHeteroatomBiophysicsPharmaceutical ScienceElectronsFluorescence PolarizationMolecular physicsArticleBiophysical PhenomenaAnalytical ChemistryValence topological charge-transfer indexElectronegativitylcsh:QD241-441Atomic orbitallcsh:Organic chemistryHeterocyclic CompoundsReference ValuesComputational chemistryDrug DiscoveryCharge distributionPhysical and Theoretical ChemistryTopological quantum numberDipole momentValence (chemistry)ChemistryOrganic ChemistryCharge densityBenzeneModels TheoreticalDipoleChemistry (miscellaneous)HeteroatomMolecular MedicineIsolelectroic seriesdescription
Valence topological charge-transfer (CT) indices are applied to the calculation of dipole moments mu. The mu calculated by algebraic and vector semisums of the CT indices are defined. The model is generalized for molecules with heteroatoms and corrected for sp(3)-heteromolecules. The ability of the indices for the description of the molecular charge distribution is established by comparing them with mu of the valence-isoelectronic series of cyclopentadiene, benzene and styrene. Two CT indices, mu(vec) (vector semisum of vertex-pair mu) and mu(vec)V (valence mu(vec)) are proposed. The mu(vec) behaviour is intermediate between mu(vec) and mu(experiment). The correction is produced in the correct direction. The best results are obtained for the greatest group. Inclusion of the heteroatom in the pi-electron system is beneficial for the description of mu, owing to either the role of additional p and/or d orbitals provided by the heteroatom or the role of steric factors in the pi-electron conjugation. The steric effect is almost constant along the series and the dominating effect is electronic. Inclusion of the heteroatom enhances mu, which can improve the solubility of the molecule. For heteroatoms in the same group, the ring size and the degree of ring flattering are inversely proportional to their electronegativity.
year | journal | country | edition | language |
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2005-02-28 | Molecules |