P. Mills et al., Vibrational study of organometallic complexes with thiophene ligands: Models for adsorbed thiophene on hydrodesulfurization catalysts, J PHYS CH A, 105(18), 2001, pp. 4418-4429
Interpretation and comparison of the vibrational spectra of organometallic
complexes containing thiophene ligands with IR spectra of adsorbed thiophen
e on sulfided Mo/Al2O3 catalysts have permitted a definitive assignment of
the adsorption mode of the surface-bonded thiophene. Infrared and Raman spe
ctra were acquired for three organometallic complexes: (eta (5)-C5D5)Re(CO)
(2)(eta (1)(S)-C4H4S), (eta (5)-C4H4S)Cr(CO)(3), and [(eta (5)-C4H4S)Mn(CO)
(3)]BF4. The vibrational properties of eta (1)(S)- and eta (5)-coordinated
thiophene were further investigated through normal-mode analyses of the IR
spectra of thiophene coordinated in (eta (5)-C4H4S)Cr(CO)(3) and (eta 5-C5D
5)Re(CO)(2)(eta (1)(S)-C4H4S). Perturbations among the force constants of a
gas-phase thiophene model, consistent with the structure of eta (1)(S)- an
d eta (5)-coordinated thiophene ligands, gave rise to respective thiophene
force fields that allowed for the accurate determination of the IR spectra
of thiophene coordinated in the Cr and Re complexes. Spectral shifts observ
ed for the IR spectrum of the eta (1)(S)-coordinated thiophene ligand, with
respect to the IR spectrum of free thiophene, are similar to those observe
d for analogous bands of thiophene adsorbed at the surface of sulfided Mo/A
l2O3 catalysts. Furthermore, perturbations among the force constants of (S)
-coordinated thiophene, necessary to model such shifts, indicate that the h
ydrocarbon backbone of thiophene is strengthened upon eta (1)(S) adsorption
, whereas the C-S bonds are significantly weakened. These bonding changes,
along with the assignment of the adsorption mode of thiophene, suggest an H
DS mechanism in which the initial steps are eta (1)(S) adsorption of thioph
ene followed by subsequent cleavage of one of the C-S bonds.