Microsolvation of HN2+ in argon: Infrared spectra and ab initio calculations of Ar-n-HN2+ (n = 1-13)

Citation
O. Dopfer et al., Microsolvation of HN2+ in argon: Infrared spectra and ab initio calculations of Ar-n-HN2+ (n = 1-13), J PHYS CH A, 103(16), 1999, pp. 2982-2991
Citations number
86
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF PHYSICAL CHEMISTRY A
ISSN journal
10895639 → ACNP
Volume
103
Issue
16
Year of publication
1999
Pages
2982 - 2991
Database
ISI
SICI code
1089-5639(19990422)103:16<2982:MOHIAI>2.0.ZU;2-U
Abstract
Infrared (IR) photodissociation spectra of mass selected Ar-n-HN2+ complexe s (n = 1-13) have been recorded in the 4 mu m spectral range in a tandem ma ss spectrometer. The dominant features are assigned to the nu(1) + m nu(s) (m = 1, 2) combination bands, where nu(1) corresponds to the intramolecular N-H stretch mode and nu(s) to the intermcrlecular stretching vibration of the first (proton-bound) Ar ligand. Systematic size-dependent complexation- induced frequency shifts and fragmentation branching ratios enabled the dev elopment of a consistent model for the cluster growth. The Ar-HN2+ dimer ha s a linear proton-bound structure and further Ar ligands fill two equatoria l solvation rings around the linear dimer core, each of them containing up to five Ar atoms. The attachment of the 12th argon atom at the nitrogen end of HN2+ leads to the completion of the first solvation shell with an icosa hedral structure. Weaker bands in the IR photodissociation spectra are attr ibuted to less stable isomers. Comparison with previous studies of the rela ted Ar-n-HOSi+ and Ar-n-HCO+ complexes reveals several similarities in the cluster growth. However, due to different charge distributions and anisotro pies of the repulsive walls of the ionic cores, subtle differences occur in the order of shell filling as well as the occurrence and stability of isom eric structures. These differences are rationalized by two-dimensional inte rmolecular potential energy surfaces calculated at the MP2/aug-cc-pVTZ(#) l evel of theory.