Resum
The relevance of the fragment relaxation energy term and the effect of the basis set superposition error on the geometry of the BF3⋯NH3 and C2H4⋯SO2 van der Waals dimers have been analyzed. Second-order Møller-Plesset perturbation theory calculations with the d95(d,p) basis set have been used to calculate the counterpoise-corrected barrier height for the internal rotations. These barriers have been obtained by relocating the stationary points on the counterpoise-corrected potential energy surface of the processes involved. The fragment relaxation energy can have a large influence on both the intermolecular parameters and barrier height. The counterpoise correction has proved to be important for these systems.
| Idioma original | Anglès |
|---|---|
| Pàgines (de-a) | 4460-4465 |
| Nombre de pàgines | 6 |
| Revista | Journal of Chemical Physics |
| Volum | 111 |
| Número | 10 |
| DOIs | |
| Estat de la publicació | Data de publicació - 8 de set. 1999 |
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