Pulsed-beam Fourier transform microwave spectroscopy was used to observe and assign the rotational spectra of the argonketene van der Waals complex. Tunneling of the hydrogen or deuterium atoms splits the a-and b-type rotational transitions of H 2 CCO-Ar, H 2 13 CCO-Ar, H 2 C 13 CO-Ar, and D 2 CCO-A
Analysis of the Rotational Spectra of SiH3CN and Its Isotopomers: Experimental andAb InitioDeterminations of the Dipole Moment and the Structure
✍ Scribed by D. Priem; J. Cosléou; J. Demaison; I. Merke; W. Stahl; W. Jerzembeck; H. Bürger
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 480 KB
- Volume
- 191
- Category
- Article
- ISSN
- 0022-2852
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✦ Synopsis
The ground state rotational spectra of SiH 3 CN and its 29 Si, 30 Si, 13 C, 15 N, d 1 , d 2 , and d 3 isotopic species have been measured by Fourier transform microwave spectroscopy and by millimeterwave spectroscopy. Accurate rotational, centrifugal distortion, and 14 N and D nuclear quadrupole coupling constants have been derived. The dipole moment of the parent species has also been measured, ϭ 3.4400(42) D. The structure, force field, dipole moment, and nuclear quadrupole coupling constants have been calculated ab initio at the SCF, MP2, and B3LYP levels using triple zeta polarized basis sets. The experimental r o , r s , and r z structures have been determined. An approximate equilibrium structure has been obtained by combining the experimental results and the ab initio calculations: r e (C §N) ϭ 1.159 Å, r e (Si™C) ϭ 1.848 Å, r e (SiϪH) ϭ 1.470 Å, and Є(HSiC) ϭ 107.4°.
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