IDENTIFICATION AND GEOMETRY OF THE PRE-REACTIVE COMPLEX UTA-1,3-DIENE-CENTER-DOT-CENTER-DOT-CENTER-DOT-CLF BY ROTATIONAL SPECTROSCOPY

Citation
Sa. Cooke et al., IDENTIFICATION AND GEOMETRY OF THE PRE-REACTIVE COMPLEX UTA-1,3-DIENE-CENTER-DOT-CENTER-DOT-CENTER-DOT-CLF BY ROTATIONAL SPECTROSCOPY, Journal of the Chemical Society. Faraday transactions, 93(14), 1997, pp. 2361-2365
Citations number
32
Categorie Soggetti
Chemistry Physical","Physics, Atomic, Molecular & Chemical
ISSN journal
09565000
Volume
93
Issue
14
Year of publication
1997
Pages
2361 - 2365
Database
ISI
SICI code
0956-5000(1997)93:14<2361:IAGOTP>2.0.ZU;2-#
Abstract
The rotational spectra of the two isotopomers C4H6...(ClF)-Cl-35 and C 4H6...(ClF)-Cl-37 of a complex formed between buta-1,3-diene and chlor ine monofluoride were observed by using a fast-mixing nozzle in a Ball e-Flygare Fourier-transform microwave spectrometer. Rotational constan ts, quartic centrifugal distortion constants and Cl nuclear-quadrupole and spin-rotation coupling constants were determined in each case. Di agonalisation of the complete Cl-35 nuclear quadrupole coupling tensor (chi(aa), chi(bb), chi(cc), chi(ab), chi(ac) and chi(bc)) led to the principal axis values [chi(ii)] (i = x, y and z). A detailed interpret ation of the observed spectroscopic constants for both isotopomers led to the conclusion that the Cl end of the ClF molecule interacts with the C-3=C-4 pi bond of buta-1,3-diene to give a complex in which the C IF molecule is perpendicular to the plane of buta-1,3-diene. The dista nce r(...Cl) of the Cl atom from the centre (*) of the C-3=C-4 pi bon d is 2.736(4) Angstrom, the angle C-3--Cl=95.0(2)degrees and the syst em ...Cl-F is nearly collinear (theta=177.4 degrees). A comparison of the properties of the prototype b pi.a sigma complexes ethene...ClF, allene...ClF and buta-1,3-diene...ClF is presented. Several similariti es are noted but the weaker binding in buta-1,3-diene...ClF (k(6)=6.2 N m(-1))is consistent with a weakening of the formal pi bonds C-1=C-2 and C-3=C-4 by conjugation in buta-1,3-diene.