Md. Fryzuk et al., SYNTHESIS, STRUCTURE AND REACTIVITY OF MONONUCLEAR PARAMAGNETIC-COMPLEXES OF ZIRCONIUM AND HAFNIUM, Polyhedron, 15(4), 1996, pp. 689-703
The reduction of the zirconium(IV) precursor Zr(mu(5)-C5H5)Cl-2[N(SiMe
(2) CH2PPr2i)(2)] with sodium-amalgam under argon or vacuum generates
the mononuclear Zr-III complex Zr(eta(5)-C5H5)Cl[N(SiMe(2)CH(2)PPr(2)(
i))(2)] as a thermally stable, crystalline material. Further functiona
lization of the remaining chloride is possible by the addition of a va
riety of organometallic reagents, as well as heteroatom nucleophiles.
Thus, the hydrocarbyl complexes Zr(eta(5)-C5H5)R[N(SiMe(2)CH(2)PPT(2)(
i))(2)] (R = Ph, Me, Et, CH(2)Ph and CH(2)SiMe(3)) were prepared as we
ll as the heteroatom derivatives Zr(eta(5)-C5H5)X[N(SiMe(2)CH(2)PPr(2)
(i))(2)] (X = OPh, NPh(2) and PPh(2)); all of the hydrocarbyl and hete
roatom substituted Zr-III derivatives are mononuclear and were charact
erized by ESR spectroscopy. In addition, the hafnium(III) complex Hf(e
ta(5)-C5H5)Cl[N(SiMe(2)CH(2)PPr(2)(i))(2)] could be isolated via the s
ame procedure but in this case, one could observe the analogous Zr-III
complex as an impurity. Oxidation of the Zr-III and Hf-III complexes
could be effected by the addition of TiCl3, PbCl2 or PhSSPh. Two cryst
al structures are also included: Zr(eta(5)-C5H5)Ph[N(SiMe(2)CH(2)PPr(2
)(i))(2)] and 5)-C5H5)CH(2)SiMe(3)[N(SiMe(2)CH(2)PPr(2)(i))(2)].