Er. Birnbaum et al., ELECTRONIC-STRUCTURES OF HALOGENATED RUTHENIUM PORPHYRINS - CRYSTAL-STRUCTURE OF RUTFPPCL8(CO)H2O A-BETA-CHLOROTETRAKIS(PENTAFLUOROPHENYL)PORPHYRIN), Inorganic chemistry, 34(7), 1995, pp. 1751-1755
Ruthenium(II) cta-beta-halotetrakis(pentafluorophenyl)porphyrins (RuTF
PPX(8)(CO), RuTFPPCl8(py)(2); X = Cl, Br) have been synthesized, and t
he crystal structure of RuTFPPCl8(CO)H2O has been determined: C57H28Cl
8F20N(4)O(5)-Ru, monoclinic, space group P2(1)/c, a = 14.364(3) Angstr
om, b = 16.012(4) Angstrom, c = 26.679(8)Angstrom; beta = 90.29(2)degr
ees, V = 6136(3) Angstrom(3), Z = 4, R(w) = 0.028 on F-2 for 8005 refl
ections, R(F) = 0.067 for 5378 reflections with F-o(2) > 3 sigma(F-o(2
)); the porphyrin is highly distorted, with 0.68 and 1.11 Angstrom ave
rage displacements of the beta-chlorine atoms from the mean porphyrin
plane. The reduction potentials of RuTFPPX(8) complexes are much more
positive (> 0.5 V) than those of unhalogenated analogues, owing to the
influence of the electron-withdrawing X atoms. The relatively high en
ergies of the Soret bands in the RuTFPPX(8) electronic spectra are con
sistent with an electronic structural model involving Run back-bonding
to the porphyrin e pi orbitals.