PURE ROTATIONAL SPECTRA OF THE VANDERWAALS NE-CO, KR-CO AND XE-CO

Citation
Ka. Walker et al., PURE ROTATIONAL SPECTRA OF THE VANDERWAALS NE-CO, KR-CO AND XE-CO, The Journal of chemical physics, 106(18), 1997, pp. 7519-7530
Citations number
56
Categorie Soggetti
Physics, Atomic, Molecular & Chemical
ISSN journal
00219606
Volume
106
Issue
18
Year of publication
1997
Pages
7519 - 7530
Database
ISI
SICI code
0021-9606(1997)106:18<7519:PRSOTV>2.0.ZU;2-D
Abstract
The pure rotational spectra of the van der Waals dimers of Ne, Kr, and Xe with CO have been measured using a pulsed jet, cavity microwave Fo urier transform spectrometer. All transitions measured were a-type R-b ranches, obeying selection rules Delta J=+1, Delta K-a=0, and Delta K- c=+1. Spectra with K-a=0 were measured for 7 isotopomers of Ne-CO, 13 of Kr-CO, and 17 of Xe-CO. Transitions with K-a=1 were measured for Ne -20-(CO)-C-12-O-16 and Kr-84-(CO)-C-12-O-16. Rotational constants and centrifugal distortion constants have been determined for all species, as well as the O-17 quadrupole coupling constants chi(aa) for Kr-84-( CO)-C-13-O-17 and Ne-20-(CO)-C-13-O-17. Effective structural parameter s have been calculated from the rotational constants. Results derived from the O-17 quadrupole coupling constants and centrifugal distortion constants indicate that Ne-CO is considerably more flexible than Ar-C O, Kr-CO, or Xe-CO. Failure to observe hyperfine structure due to the Ne-21, Kr-83, and Xe-131 nuclei is discussed in terms of the weak rare gas-CO bonding. Comparisons have been made to the isoelectronic rare gas-N-2 van der Waals complexes. (C) 1997 American Institute of Physic s.