The mm-wave rotational spectrum of 2-chloroacrylonitrile, \(\mathrm{H}_{2} \mathrm{C}-\mathrm{CCICN}\), was measured in the frequency region \(160-350 \mathrm{GHz}\) with a \(\mathrm{mm}\)-wave BWO spectrometer. The spectrum is dominated by prominent oblate-type bands consisting of overlaps of low-
The Millimeter-Wave Rotational Spectrum of Chloroacetonitrile
โ Scribed by Z. Kisiel; L. Pszczolkowski
- Publisher
- Elsevier Science
- Year
- 1993
- Tongue
- English
- Weight
- 512 KB
- Volume
- 158
- Category
- Article
- ISSN
- 0022-2852
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โฆ Synopsis
The ground state rotational spectrum of chloroacetonitrile, (\mathrm{CH}{2} \mathrm{ClCN}), was measured over the frequency region 164-332 (\mathrm{GHz}) with a mm-wave BWO spectrometer. Frequency measurements on a broad range of transitions were used to determine spectroscopic constants for ({ }^{35} \mathrm{Cl}) and ({ }^{37} \mathrm{Cl}) chloroacetonitrile, in both the (S) - and (A)-reductions of Watson's Hamiltonian. Centrifugal distortion constants up to octic and decadic were required for fitting of the highest (J) and (K{\text {. }}), transitions. The reliability of the determination of distortion constants of various orders is discussed. c: 1993 Academic Press. Inc.
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