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Rotational Spectrum of CD2I2: An Isotopomer of the First Molecule Containing Two Iodine Nuclei Investigated by Microwave Spectroscopy

✍ Scribed by Zbigniew Kisiel; Lech Pszczółkowski; Laura B. Favero; Walther Caminati


Publisher
Elsevier Science
Year
1998
Tongue
English
Weight
275 KB
Volume
189
Category
Article
ISSN
0022-2852

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✦ Synopsis


The rotational spectrum of CD 2 I 2 was measured and analyzed by combining results from two different millimeter wave spectrometers. Low-J transitions were measured with a free jet spectrometer at conditions of completely resolved hyperfine structure over the frequency range 59-69 GHz. High-J rotational transitions were measured at room temperature at frequencies 167-338 GHz and for JЉ up to 190Љ. Spectroscopic constants in the sextic rotational Hamiltonian of CD 2 I 2 have been determined, and the analysis of the observed hyperfine structure yielded all components in the inertial and in the principal nuclear quadrupole coupling tensors for the iodine nuclei. The rotational constants for CD 2 I 2 and those for CH 2 I 2 from Z. Kisiel, L. Pszczo ´łkowski, W. Caminati, and P. G. Favero (1996. J. Chem. Phys. 105, 1778-1785) have been used to evaluate a full r 0 structure and have been combined with the results of ab initio calculations to also evaluate the average r* structure: r(CI) Å 2.1364(6) A ˚, r(CH) Å 1.078(2) A ˚, Є( ICI) Å 113.83(5)Њ, and Є( HCH) Å 113.3(3)Њ. The current results complete the first analysis of a rotational spectrum of a molecule containing two iodine nuclei.