THE SOLVATION OF CL-, BR-, AND I- IN ACETONITRILE CLUSTERS - PHOTOELECTRON-SPECTROSCOPY AND MOLECULAR-DYNAMICS SIMULATIONS

Citation
G. Markovich et al., THE SOLVATION OF CL-, BR-, AND I- IN ACETONITRILE CLUSTERS - PHOTOELECTRON-SPECTROSCOPY AND MOLECULAR-DYNAMICS SIMULATIONS, The Journal of chemical physics, 105(7), 1996, pp. 2675-2685
Citations number
31
Categorie Soggetti
Physics, Atomic, Molecular & Chemical
ISSN journal
00219606
Volume
105
Issue
7
Year of publication
1996
Pages
2675 - 2685
Database
ISI
SICI code
0021-9606(1996)105:7<2675:TSOCBA>2.0.ZU;2-4
Abstract
We present the photoelectron spectra of Cl-, Br-, and I- solvated in a cetonitrile clusters (CH3CN)(n) with n=1-33, 1-40, and 1-55, respectiv ely, taken with 7.9 eV photon energy. Anion-solvent electrostatic stab ilization energies are extracted from the measured vertical electron b inding energies. The leveling of stabilization energies beyond n=10-12 for the three halides signifies the completion of the first solvation layer. This is different from the behavior of anion-water clusters wh ich probably do not fill the first solvation layer, but rather form su rface solvation states. Classical molecular dynamics simulations of ha lide-acetonitrile clusters reproduce the measured stabilization energi es and generate full solvation shells of 11-12, 12, and 12-13 solvent molecules for Cl-, Br-, and I-, respectively. Ordered shell structures with high stability were found for the clusters of Cl-, Br-, and I- w ith n=9, 9, and 12. This special stability is reflected in the intensi ty distribution of the clusters in the mass spectra. Larger anion-acet onitrile clusters have the molecules beyond the first solvation layer packed in a small droplet which is attached to the first layer. It is suggested that in general, anions solvated in large clusters of polar solvents, might be located close to their surface.