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Gunnar Karlström

Professor emeritus

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Accuracy of distributed multipoles and polarizabilities: Comparison between the LoProp and MpProp models

Author

  • Pär Söderhjelm
  • Jesper Wisborg Krogh
  • Gunnar Karlström
  • Ulf Ryde
  • Roland Lindh

Summary, in English

Localized multipole moments up to the fifth moment as well as localized dipole polarizabilities are calculated with the MpProp and the newly developed LoProp methods for a total of 20 molecules, predominantly derived from amino acids. A comparison of electrostatic potentials calculated from the multipole expansion obtained by the two methods with ab initio results shows that both methods reproduce the electrostatic interaction with an elementary charge with a mean absolute error of similar to 1.5 kJ/mol at contact distance and less than 0.1 kJ/mol at distances 2 angstrom further out when terms up to the octupole moments are included. The polarizabilities are tested with homogenous electric fields and are-found to have similar accuracy. The MpProp method gives better multipole moments unless diffuse basis sets are used, whereas LoProp gives better polarizabilities. (C) 2007 Wiley Periodicals, Inc.

Department/s

  • Computational Chemistry

Publishing year

2007

Language

English

Pages

1083-1090

Publication/Series

Journal of Computational Chemistry

Volume

28

Issue

6

Full text

Document type

Article

Publisher

John Wiley & Sons Inc.

Topic

  • Theoretical Chemistry (including Computational Chemistry)

Keywords

  • multipole moments
  • polarizabilities
  • MOLCAS

Status

Published

ISBN/ISSN/Other

  • ISSN: 1096-987X