Approximate molecular electrostatic potentials MESPs are ## Ε½ . calculated with the asymptotic density model ADM on the basis of semiempirical wavefunctions generated by the SINDO1 method. The approximate MESP is adjusted to obtain good agreement with the exact MESP from 6-31G\* ab initio calcula
The electrostatic potential in the semiempirical molecular orbital approximation
β Scribed by Peter L. Cummins; Jill E. Gready
- Publisher
- Elsevier Science
- Year
- 1994
- Tongue
- English
- Weight
- 630 KB
- Volume
- 225
- Category
- Article
- ISSN
- 0009-2614
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β¦ Synopsis
A method is described for calculating the molecular electrostatic potential (MEP) within the MNDQ, AM1 or PM3 semiempirical approximations. The MEPs are used to obtain atomic charges from which dipole moments are calculated for comparison with the exact semiempirical values. The results for a wide range of neutral molecules and ions show excellent agreement between the dipole moments calculated from MEPderived atomic charges and the exact semiempirical dipole moments. The neutral molecules and cations showed a mean deviation in the dipole of less than 0.0 1 D. The maximum errors ( z 0.04 D) were obtained for some molecules containing third row or heavier elements. By contrast, all previously reported methods based on tbe semiempirical approximations for generating MEP-charges in general yield significantly larger deviations from tbe exact dipoles. The maximum error for the anions tested was 0.07 D, with a mean deviation only slightly higher than for neutral species and cations. The correct limiting behaviour is obtained when the MEP surfaces are calculated at large distances, i.e. tbe exact dipole is approached asymptotically. Quadrupole moments of the MEPderived charge distributions are reported for some nonpolar and polar molecules.
π SIMILAR VOLUMES
## Abstract The molecular electrostatic potential (MEP) distribution of anisole, chlorobenzene, and fluorobenzene obtained from STOβ3G, 3β21G, and 6β31G\* basis set __ab initio__ and MNDO and AM1 semiempirical wave functions is investigated to explain the differences among the MEP features obtained
## Abstract The natural atomic orbital/point (NAOβPC) model originally developed to calculate molecular electrostatic potentials (MEPs) and multiple moments based on the AM1 wave function has been extended to PM3. As for AM1, NAOβPC/PM3 reproduces dipole moments calculated by the standard PM3 metho