Literature DB >> 22088061

Millimeter-wave rotational spectroscopy of FeCN (X 4Δi) and FeNC (X 6Δi): determining the lowest energy isomer.

M A Flory1, L M Ziurys.   

Abstract

The pure rotational spectrum of FeCN has been recorded in the frequency range 140-500 GHz using millimeter/sub-millimeter direct absorption techniques. The species was created in an ac discharge of Fe(CO)(5) and cyanogen. Spectra of the (13)C, (54)Fe, and (57)Fe isotopologues were also measured, confirming the linear cyanide structure of this free radical. Lines originating from several Renner-Teller components in the ν(2) bending mode were also observed. Based on the observed spin-orbit pattern, the ground state of FeCN is (4)Δ(i), with small lambda-doubling splittings apparent in the Ω = 5/2, 3/2, and 1/2 components. In addition, a much weaker spectrum of the lowest spin-orbit component of FeNC, Ω = 9/2, was recorded; these data are consistent with the rotational parameters of previous optical studies. The data for FeCN were fit with a Hund's case (a) Hamiltonian and rotational, spin-orbit, spin-spin, and lambda-doubling parameters were determined. Rotational constants were also established from a case (c) analysis for the other isotopologues, excited vibronic states, and for FeNC. The r(0) bond lengths of FeCN were determined to be r(Fe-C) = 1.924 Å and r(C-N) = 1.157 Å, in agreement with theoretical predictions for the (4)Δ(i) state. These measurements indicate that FeCN is the lower energy isomer and is more stable than FeNC by ~1.9 kcal/mol.
© 2011 American Institute of Physics

Entities:  

Year:  2011        PMID: 22088061     DOI: 10.1063/1.3653809

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  2 in total

1.  Discovery of the first Ca-bearing molecule in space: CaNC.

Authors:  J Cernicharo; L Velilla-Prieto; M Agúndez; J R Pardo; J P Fonfría; G Quintana-Lacaci; C Cabezas; C Bermúdez; M Guélin
Journal:  Astron Astrophys       Date:  2019-07-03       Impact factor: 5.802

2.  Alkaline and Alkaline-earth Cyanoacetylides: A Combined Theoretical and Rotational Spectroscopic Investigation.

Authors:  Carlos Cabezas; Carmen Barrientos; Antonio Largo; Jean-Claude Guillemin; José Cernicharo; José L Alonso
Journal:  J Chem Phys       Date:  2019-08-07       Impact factor: 3.488

  2 in total

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