Fourier transform microwave spectrum of (HCCCN)-N-15 and global analysis of the high resolution infrared and rotational spectra up to 1700 cm(-1)

Fayt, André;Willaert, F.;Demaison, J.;Starck, T.;Buerger, H.;et.al.
(2008) Chemical Physics — Vol. 346, n° 1-3, p. 115-131 (2008)

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Authors
  • Fayt, AndréUCLouvain
    Author
  • Willaert, F.
    Author
  • Demaison, J.UCLouvain
    Author
  • Starck, T.
    Author
  • Buerger, H.
    Author
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Abstract
The rotational spectrum of an enriched sample of HC C-C N-15 was measured in the range 8-27 GHz by means of a waveguide Fourier transform microwave spectrometer. New transitions were also measured in the millimetre- and submillimetre ranges. These measurements combined with the available rovibrational and rotational data [Fayt et al., J. Mol. Struct. 695-696 (2004) 295], with many newly assigned infrared bands, were used for a global rovibrational analysis of all vibrational states up to 1700 cm(-1). A full set of 243 molecular parameters for the modes upsilon(4)-upsilon(7) has been deduced. (C) 2008 Elsevier B.V. All rights reserved.
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Citations

Fayt, A., Willaert, F., Demaison, J., Starck, T., Maeder, H., Pawelke, G., Mkadmi, E. B., & Buerger, H. (2008). Fourier transform microwave spectrum of (HCCCN)-N-15 and global analysis of the high resolution infrared and rotational spectra up to 1700 cm(-1). Chemical Physics, 346(1-3), 115-131. https://doi.org/10.1016/j.chemphys.2008.02.041 (Original work published 2008)