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  • 1
    Electronic Resource
    Electronic Resource
    College Park, Md. : American Institute of Physics (AIP)
    The Journal of Chemical Physics 111 (1999), S. 6204-6210 
    ISSN: 1089-7690
    Source: AIP Digital Archive
    Topics: Physics , Chemistry and Pharmacology
    Notes: A general nonorthogonal coupled-electron pair approach based on the intermediate optimization of virtual orbitals is presented. The resulting procedure, similar to the independent electron pair approximation scheme, is developed in the framework of the valence bond (VB) theory, where the effect of the overlap is directly taken into account. Nonorthogonal virtual orbitals optimal for intermolecular correlation effects were determined starting from the self-consistent field for molecular interaction wave function. These were used in the context of a general ab initio variational multistructure VB wave function consisting of double excitations arising from simultaneous single excitations localized on each monomer. The basis set superposition error is excluded in an a priori fashion and geometry relaxation effects are naturally taken into account. As an application example, the equilibrium structure and binding energy of the water dimer system were determined. The equilibrium oxygen–oxygen distance results to be 2.954 Å, in good agreement with the experimental values (2.946 or 2.952 Å) corrected for anharmonicity of the dimer vibrations. The estimated equilibrium interaction energy is −5.02 kcal/mol, thus comparing favorably with the experimental value of −5.44±0.7 kcal/mol. Taking zero-point vibrational effects into account, the calculated binding enthalpy is −3.22 kcal/mol, in accordance with the experimental estimate of −3.59±0.5 kcal/mol, determined from measures of thermal conductivity of the vapor. The importance of employing basis sets that include diffuse polarization functions in correlated calculations on hydrogen-bonded systems is confirmed. © 1999 American Institute of Physics.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-2234
    Keywords: Key words: Basis set superposition error ; Intermolecular interactions ; Restricted open shell Hartree-Fock ; Self-consistent field for molecular interactions
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract. The self-consistent field (SCF) for molecularinteractions algorithm, particularly devised to compute intermolecular interactions, is extended to the case in which one of the two interacting fragments is an open shell system. The method excludes the basis set superposition error in an a priori fashion. To preserve the simplicity of the standard SCF procedure, Guest and Saunders equations concerning the open shell fragment are modified at the cost of a negligible complication with respect to the usual algorithm.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 69 (1998), S. 151-158 
    ISSN: 0020-7608
    Keywords: BSSE ; SCF-MI ; intermolecular interactions ; analytic gradient Hessian ; Chemistry ; Theoretical, Physical and Computational Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: A modification of the Roothaan equations was described in a previous work, which aimed to avoid the BSSE at the Hartree-Fock level of theory. The resulting scheme was called the self-consistent field for molecular interactions (SCF-MI) to underline its special usefulness in the computation of intermolecular interactions. The method provides a complete a priori elimination of the BSSE, while taking into account the natural nonorthogonality of the MOs of the two interacting fragments. Compatibility with the usual formulation of the analytic derivatives of the SCF energy is also guaranteed. This allowed the implementation of gradient-optimization algorithms and force constant matrix computations in both the direct and conventional SCF approaches. The SCF-MI method has been incorporated into the GAMESS-US package. Tests have been performed at the Department of Chemistry of the Iowa State University. Increases in the complication and computation time are minimal if compared to standard SCF codes and the method shows much less basis-set dependence in the predicted molecular properties.   © 1998 John Wiley & Sons, Inc. Int J Quant Chem 69: 151-158, 1998
    Additional Material: 2 Ill.
    Type of Medium: Electronic Resource
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