M. Paneque et al., C-H bond activation of thiophenes by Ir complexes of the hydrotris(3,5-dimethylpyrazolyl)borate ligand, Tp(Me2), ORGANOMETAL, 18(2), 1999, pp. 139-149
The bis(ethylene) derivative Tp(Me2)Ir(C2H4)(2) (1) reacts with thiophene,
2-methylthiophene, and 3-methylthiophene with formation of Tp(Me2)Ir(2-thie
nyl)(2)(SC4H3R) (R = H, 4; R = Me, 7, 8) species in which the two thienyl m
oieties are the result of the alpha-C-H bond activation of the thiophenes.
PMe3 and CO adducts of formulation Tp(Me2)Ir(2-thienyl)(2)(L) are readily s
ynthesized from the corresponding S-bonded thiophene derivatives: The struc
ture of the CO complex Tp(Me2)Ir(2-SC4H3)(2)(CO) (6) has been confirmed by
a single-crystal X-ray analysis. NMR spectroscopic studies are in accord wi
th these adducts existing in solution as mixtures of three rotameric specie
s that arise from restricted rotation around the Ir-thienyl bonds. Hydrogen
ation of complexes 4, 7, and 8 under relatively mild conditions gives the c
orresponding Tp(Me2)IrH(2)(SC4H3R) dihydrides. These last mentioned species
experience interesting Ir-H and C-H(thienyl) deuteration exchanges with C6
D6 as well as a complex decomposition reaction that gives mainly dimeric sp
ecies with an unusual C,S-mu(2)-eta(1)-eta(1) bridging ligand. Mechanistic
proposals for these two processes are presented. Monothienyl Ir(III) specie
s are also accessible; for example the complex Tp(Me2)IrH(2-SC4H3)(SC4H4) (
19) can be obtained from Tp(Me2)IrH(2)(C2H4) and thiophene. Finally, the th
ermal activation of SC4H4, 2- and 3-SC4H3Me, and 2,5-SC4H2Me2 by the 2,3-di
methylbutadiene-Ir(I) complex Tp(Me2)(eta(4)-CH2C(Me)C(Me)CH2) has been inv
estigated. Thiophene and the monomethylthiophenes give the complexes 4, 7,
and 8, whereas for 2,5-SC4H2Me2, the reaction takes a different course and
affords a hydride-thienyl derivative along with the E and Z isomers of a th
ienyl-substituted olefin.