Reactions of the Si-H functionalized silicon-bridged [1]ferrocenophane Fe(eta-C5H4)(2)SiMeH with dicobalt octacarbonyl: Ring-opening metalization andthe synthesis of a novel sila[1]ferrocenophane with a Co(CO)(4) substituent
A. Berenbaum et al., Reactions of the Si-H functionalized silicon-bridged [1]ferrocenophane Fe(eta-C5H4)(2)SiMeH with dicobalt octacarbonyl: Ring-opening metalization andthe synthesis of a novel sila[1]ferrocenophane with a Co(CO)(4) substituent, ORGANOMETAL, 20(5), 2001, pp. 834-843
Reaction of Co-2(CO)(8) with the Si-H-functionalized sila[1]ferrocenophane
Fe(eta -C5H4)(2)SiMeH (la) was found to result in metalation of silicon and
ring-opening of the ferrocenophane, affording the orange crystalline silyl
ene-bridged dicobalt heptacarbonyl complex (eta -C5H6)-Fe(eta -C5H4)Si[mu -
Co-2(CO)(7)](Me) 6 in 45% yield. The novel red, crystalline sila[1]ferrocen
ophane Fe(eta -C5H4)(2)Si[Co(CO)(4)](Me) (8), the first with a direct Si-M
bond, was isolated in 23% yield when the reaction between la and Co-2(CO)(8
) was conducted in NEt3 as a proton trap. The dinuclear complex 6 and metal
ated silicon-bridged ferrocenophane 8 were each characterized by multinucle
ar NMR spectroscopy, mass spectrometry, and single-crystal X-ray diffractio
n. [1]Ferrocenophanes Fe(eta -C5H4)(2)Si(Et)(H) (9) and Fe(eta -C5H4)(2)Si(
Me)(D) (10) were prepared in order to investigate whether the ring-opening
reaction that afforded 6 was an intramolecular or an intermolecular process
. Mass spectral analysis of the products of the reaction of an equimolar mi
xture of 9 and 10 with Co-2(CO)(8) showed only the presence of (eta -C5H5)-
Fe(eta -C5H4)Si[mu -Co-2(CO)(7)](Et) (11) and (eta -C5H4D)Fe(eta -C5H4)Si[m
u -Co-2(CO)(7)](Me) (12); neither (eta -C5H4D)Fe(eta -C5H4)Si[mu -Co-2(CO)(
7)](Et) (11') nor (eta -C5H5)Fe(eta -C5H4)Si[mu -Co-2(CO)(7)](Me) (12') wer
e detected, which indicated that the ring-opening process was intramolecula
r. Compounds 11 and 12 were synthesized separately to provide comparative s
pectroscopic data for the mechanistic investigation.