Rotational spectra of seven conformational isomers of 1-hexene

Citation
Gt. Fraser et al., Rotational spectra of seven conformational isomers of 1-hexene, J PHYS CH A, 104(6), 2000, pp. 1141-1146
Citations number
20
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF PHYSICAL CHEMISTRY A
ISSN journal
10895639 → ACNP
Volume
104
Issue
6
Year of publication
2000
Pages
1141 - 1146
Database
ISI
SICI code
1089-5639(20000217)104:6<1141:RSOSCI>2.0.ZU;2-S
Abstract
The rotational spectra of 7 of the expected 13 conformational isomers of 1- hexene have been measured and assigned at a rotational temperature of <2 K using a pulsed-molecular-beam Fourier transform microwave spectrometer. The rotational assignments were guided by predictions from the MM3 molecular m echanics force field of Allinger et al. and by ab initio electronic-structu re calculations (MP2/6-31G*). Six of the seven observed conformers have C-1 symmetry, as verified by the observation of a-, b-, and c-type electric-di pole transitions. The remaining conformer has C-s symmetry, consistent with its small inertial defect, Delta = I-cc - I-bb - I-aa = -12.65 u Angstrom( 2), and the observation of only a and b-type transitions. Here, I-alpha alp ha is the moment of inertia of the conformer about its alpha-principal axis . The inertial defects determined for the seven conformers range from -12.6 5 to -51.29 u Angstrom(2). Both the molecular mechanics and ab initio calcu lations indicate the observed conformers are associated with the seven lowe st-energy conformational minima of 1-hexene. The ab initio calculated energ y difference between the lowest and highest energy conformers observed is 3 26 cm(-1), including vibrational zero-point contributions, indicating that the conformational temperature is not equilibrated with the <2 K rotational temperature of the molecular-beam expansion.