2009International Journal of Quantum ChemistryRequires access

Ab-initio potential energy functions for scattering from energy-partitioned Ab-initio SCF intermolecular energies plus dispersion

Joyce J. Kaufman

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Abstract

Ab-initio intermolecular potential energy functions for scattering derived from separately fitting each term from energy-partitioned ab-initio SCF intermolecular calculations (plus dispersion) hold promise of being more accurate and more reliable than intermolecular potential energy functions fitted solely to total calculated ab-initio SCF intermolecular energies (plus dispersion). This procedure also will permit the derivation of ab-initio potential functions between much larger molecules than are customarily possible at present.

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What this paper is about

Ab-initio intermolecular potential energy functions for scattering derived from separately fitting each term from energy-partitioned ab-initio SCF intermolecular calculations (plus dispersion) hold promise of being more accurate and more reliable than intermolecular potential energy functions fitted solely to total calculated ab-initio SCF intermolecular energies (plus dispersion). This procedure also will permit the derivation of ab-initio potential functions between much larger molecules than are customarily possible at present.

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Available abstract

Ab-initio intermolecular potential energy functions for scattering derived from separately fitting each term from energy-partitioned ab-initio SCF intermolecular calculations (plus dispersion) hold promise of being more accurate and more reliable than intermolecular potential energy functions fitted solely to total calculated ab-initio SCF intermolecular energies (plus dispersion). This procedure also will permit the derivation of ab-initio potential functions between much larger molecules than are customarily possible at present.

Key concepts: Ab initio, Intermolecular force, Ab initio quantum chemistry methods, Chemistry, Dispersion (optics), Computational chemistry, Scattering, Molecular physics

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