The microwave spectrum of \(\left[2-{ }^{18} \mathrm{O}\right]\) cyclobutene ozonide, a new isotopomeric species, has been assigned and the absolute direction of the dipole moment has been determined. The aim of this investigation has been to determine symmetric/asymmetric isotopomer concentrations
Far-IR Spectroscopy of Ozone as a Means of Quantification of Ozone Isotopomers
✍ Scribed by L.K. Christensen; N.W. Larsen; F.M. Nicolaisen; T. Pedersen; G.O. Sørensen; Helge Egsgaard
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 479 KB
- Volume
- 175
- Category
- Article
- ISSN
- 0022-2852
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✦ Synopsis
The rotational spectrum of ozone in the far IR, obtained with a 0.004 cm 01 resolution, has been used to quantify ozone isotopomers in an artificially produced mixture of normal and 18 O substituted ozone species. Higher order terms in the dipole operator have been found to significantly influence the theoretical line intensities of some of the rotational transitions. A planarity relation between some of the U-constants was found in this connection. The results have been used partly to calibrate our microwave spectrometer for future ozone isotopomer quantification and partly to quantify the mixture studied. In particular the ratio r 50 between unsymmetric and symmetric species of mono-18 O ozone has been determined with the aim of detecting possible deviations from the statistical value 2.00; for the two mixtures studied r 50 Å 2.12(9) and r 50 Å 2.00(8).
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