International Journal of Quantum Chemistry · 1987 · 39 citations · 23 references
Bond FragmentsEngineeringBiophysicsFormamide MoleculeMolecular Electrostatic PotentialsNatural SciencesChemical BondPhysical ChemistryComputational ChemistryMolecular MechanicQuantum ChemistryChemistryMolecular ChemistryMolecular ModelingComputational BiochemistrySmall Molecules
Abstract We apply completely transferable, strictly localized molecular orbitals for the calculation of molecular electrostatic fields. This approach, derived from our previous bond fragment method for the calculation of molecular electrostatic potentials, reduces computational efforts drastically. The fields around small molecules containing first‐ and second‐row atoms are systematically overestimated as compared with ab initio calculations with a minimal STO ‐3G basis set. However, deviations can be corrected by a simple multiplicative factor, which means that the overall shape of the potential and field around the molecule is correctly reproduced. Our approximate field can be used to determine possible hydration sites around molecules as proposed earlier by Peinel and coworkers. Application of the method is illustrated on the formamide molecule.
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Dipole moment of water from Stark measurements of H2O, HDO, and D2O
S. A. Clough, Yardley Beers, Gerald P. Klein et al. · The Journal of Chemical Physics · 1973 · 688 citations