ON THE NATURE OF THE INTERACTION ENERGY IN THE AR-CIF COMPLEX

Citation
J. Sadlej et al., ON THE NATURE OF THE INTERACTION ENERGY IN THE AR-CIF COMPLEX, The Journal of chemical physics, 99(5), 1993, pp. 3700-3706
Citations number
50
Categorie Soggetti
Physics, Atomic, Molecular & Chemical
ISSN journal
00219606
Volume
99
Issue
5
Year of publication
1993
Pages
3700 - 3706
Database
ISI
SICI code
0021-9606(1993)99:5<3700:OTNOTI>2.0.ZU;2-K
Abstract
The analysis of the potential energy surface of the Ar-ClF complex is performed using the perturbation theory of intermolecular forces. The three minima on the potential energy surface correspond to the linear Ar-Cl-F configuration (global minimum D(e)=233 cm-1), the linear Ar-F- Cl configuration (D(e)=133 cm-1), and the T structure in which the Ar atom is nearly perpendicular to the molecular axis of Cl-F (D(e)=146 c m-1). The calculated parameters of the minima are in full accord with the recent ab initio study by Tao and Klemperer [J. Chem. Phys. 97, 44 0 (1992)]. The absolute minimum results from the attractive dispersion and polarization energies which help overcome a considerable exchange repulsion. The secondary linear minimum Ar-F-Cl, is due, in large mea sure, to the dispersion energy accompanied by a weaker exchange repuls ion. The T configuration is characterized by the weakest repulsion and the dispersion energy roughly equal to that in Ar-F-Cl. The analysis of the angular behavior of the Heitler-London interaction energy leads us to believe that the charge distribution of the Cl-F molecule posse sses a concave shape along the molecular axis at the Cl end of the mol ecule. This indentation in the charge cloud allows subsystems to appro ach close to one another in the linear Ar-Cl-F arrangement, and also c auses an appreciable stiffness of the Ar-Cl-F bending mode.