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A systematic and feasible method for computing nuclear contributions to electrical properties of polyatomic molecules

An analytic method to evaluate nuclear contributions to electrical properties of polyatomic molecules is presented. Such contributions control changes induced by an electric field on equilibrium geometry (nuclear relaxation contribution) and vibrational motion (vibrational contribution) of a molecular system. Expressions to compute the nuclear contributions have been derived from a power series expansion of the potential energy. These contributions to the electrical properties are given in terms of energy derivatives with respect to normal coordinates, electric field intensity or both. Only one calculation of such derivatives at the field-free equilibrium geometry is required. To show the useful efficiency of the analytical evaluation of electrical properties (the so-called AEEP method), results for calculations on water and pyridine at the SCF/TZ2P and the MP2/TZ2P levels of theory are reported. The results obtained are compared with previous theoretical calculations and with experimental values

© Journal of Chemical Physics, 1997, vol. 107, núm. 5, p. 1501-1512

American Institute of Physics

Autor: Luis Luis, Josep Maria
Duran i Portas, Miquel
Andrés, José Luís
Data: 1997
Resum: An analytic method to evaluate nuclear contributions to electrical properties of polyatomic molecules is presented. Such contributions control changes induced by an electric field on equilibrium geometry (nuclear relaxation contribution) and vibrational motion (vibrational contribution) of a molecular system. Expressions to compute the nuclear contributions have been derived from a power series expansion of the potential energy. These contributions to the electrical properties are given in terms of energy derivatives with respect to normal coordinates, electric field intensity or both. Only one calculation of such derivatives at the field-free equilibrium geometry is required. To show the useful efficiency of the analytical evaluation of electrical properties (the so-called AEEP method), results for calculations on water and pyridine at the SCF/TZ2P and the MP2/TZ2P levels of theory are reported. The results obtained are compared with previous theoretical calculations and with experimental values
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Cita: Luis Luis, Josep Maria, Duran i Portas, Miquel, i Andrés, José Luís (1997). A systematic and feasible method for computing nuclear contributions to electrical properties of polyatomic molecules. Journal of Chemical Physics, 107 (5), 1501-1512. Recuperat 28 gener 2011, a http://link.aip.org/link/JCPSA6/v107/i5/p1501/s1
ISSN: 0021-9606 (versió paper)
1089-7690 (versió electrònica)
Accés al document: http://hdl.handle.net/10256/3214
Llenguatge: eng
Editor: American Institute of Physics
Col·lecció: Reproducció digital del document publicat a: http://dx.doi.org/10.1063/1.474503
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És part de: © Journal of Chemical Physics, 1997, vol. 107, núm. 5, p. 1501-1512
Drets: Copyright (2010) American Institute of Physics. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics
Matèria: Anàlisi numèrica
Camps elèctrics
Dinàmica molecular
Electric fields
Molecular dynamics
Numerical analysis
Títol: A systematic and feasible method for computing nuclear contributions to electrical properties of polyatomic molecules
Tipus: info:eu-repo/semantics/article
Repositori: DUGiDocs

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