Amine attack on the carbonyl ligands of the protonated dicyclopentadienyl-bridged diruthenium complex [{(eta(5)-C5H3)(2)(SiMe2)(2)}Ru-2(CO)(4)(mu-H)](+)

Citation
Mv. Ovchinnikov et al., Amine attack on the carbonyl ligands of the protonated dicyclopentadienyl-bridged diruthenium complex [{(eta(5)-C5H3)(2)(SiMe2)(2)}Ru-2(CO)(4)(mu-H)](+), ORGANOMETAL, 20(4), 2001, pp. 691-696
Citations number
37
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
ORGANOMETALLICS
ISSN journal
02767333 → ACNP
Volume
20
Issue
4
Year of publication
2001
Pages
691 - 696
Database
ISI
SICI code
0276-7333(20010219)20:4<691:AAOTCL>2.0.ZU;2-M
Abstract
Complexes [{(eta (5)-C5H3)(2)(SiMe2)(2))Ru-2}(CO)(4)(mu -H)](+) (1H(+)BF(4) (-), 1D(+)TfO(-)), with a protonated Ru-Ru bond, were prepared by protonati on of {(eta (5)-C5H3)(2)(SiMe2)(2)}Ru-2(CO)(4) (1) With HBF4. Et2O or CF3SO 3D. The bridging proton in 1H(+) is removed oily very slowly by amine bases even though it is thermodynamically acidic (pK(a)(AN) = 6.5 (+/-0.2)). Thi s-remarkable kinetic inertness of the bridging proton allows amines (NH3-, NH2CH3, NH(CH3)(2), morpholine, piperidine, pyrrolidine) to react with 1H() by attacking the CO ligand to give a formamide (HC(=O)NR2) and the CO-sub stituted product {(eta (5)-C5H5)(2)(SiMe2)(2)}Ru-2(CO)(3)(NMR2) (2) Thus, p rotonation of the metal-metal bond in 1H(+) promotes reactions of the CO li gand that are not possible;ip the unprotonated 1. A proposed mechanism for these reactions is supported by kinetic studies of the reaction of 1D(+)TfO (-) with morpholine in nitromethane at 20.0 degreesC, as well as by deuteri um-labeling experiments. The molecular structure of {(eta (5)-C5H3)(2)-(SiM e2)(2)}Ru-2(CO)(3)(NH2CH3) (2f), as determined by an X-ray diffraction inve stigation, is also presented.