Journal of Physical Chemistry A, Vol.110, No.19, 6307-6323, 2006
Structures of tetrafluorocyclopropene, hexafluorocyclobutene, octafluorocyclopentene and related perfluoroalkene radical anions revealed by electron spin resonance spectroscopic and computational studies
Isotropic and anisotropic ESR spectra were observed for the radical anions of hexafluorocyclobutene (c-C4F6-), octafluorocyclopentene (c-C5F8-) and perfluoro-2-butene (CF3CF=CFCF3-) in - irradiated plastically crystalline neopentane, tetramethylsilane (TMS) and TMS-d(12) matrices, or the rigid 2-methyltetrahydrofuran (MTHF) matrix. The isotropic spectra of c-C4F6- and c-C5F8- are characterized by three different sets of pairs of F-19 nuclei with the isotropic hyperfine (hf) splittings of 15.2 (2F), 6.5 (2F), 1.1 (2F) mT for c-C4F6 and 14.7 (2F), 7.4 (2F), 1.0 (2F) mT for c-C5F8-. By comparison with the results of ab initio quantum chemical computations, the large triplet 19F hf splittings of ca. 15 mT are assigned to the two fluorines attached to the C=C bond. The UHF, B3LYP and MP2 computations predict that the geometrical structures of the perfluoroalkenes are strongly distorted by one-electron reduction to form their radical anions; c-C3F4-: C-2 symmetry ((2)A state) <- C-2v ((1)A(1)), c-C4F6-: C-1((2)A) <- C-2v ((1)A(1)) and c-C5F8-: C-1 ((2)A) <- C-s ((1)A'). The structural distortion arises from a mixing of the pi* and higher-lying sigma* orbitals at the C=C carbons similar to that previously found for CF2=CF2- with a C-2h distortion. The isotropic F-19 hf splittings computed with the B3LYP method with 6-311+G(2df,p) basis set for the geometry optimized by the UHF and/or MP2 methods are within 6% error of the experimental values. The experimental anisotropic spectra of c-C4F6-, c-C5F8- and CF(2)dCF(2)(-) were satisfactorily reproduced by the ESR spectral simulation method using the computed hf principal values and orientation of 19F nuclei. In addition, the electronic excitation energies and oscillator strengths for the CF2=CF2-, c-C3F4-, c-C4F6- and c-C5F8- radical anions were computed for the first time by TD-DFT methods.