Novel routes to bidentate cyclopentadienly-alkoxide complexes of titanium:Synthesis of (eta(5)-sigma-(C5R4CHRCH2CRROTiCl2)-C-1-C-2-R-3-O-4

Citation
Sdr. Christie et al., Novel routes to bidentate cyclopentadienly-alkoxide complexes of titanium:Synthesis of (eta(5)-sigma-(C5R4CHRCH2CRROTiCl2)-C-1-C-2-R-3-O-4, ORGANOMETAL, 18(3), 1999, pp. 348-359
Citations number
113
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
ORGANOMETALLICS
ISSN journal
02767333 → ACNP
Volume
18
Issue
3
Year of publication
1999
Pages
348 - 359
Database
ISI
SICI code
0276-7333(19990201)18:3<348:NRTBCC>2.0.ZU;2-7
Abstract
Reaction of C5R41(SiMe3)(CHRCH2CRROR5)-C-2-R-3-O-4 with titanium tetrachlor ide gives the bidentate eta(5)-sigma-cyclopentadienyl-alkoxide complexes of titanium (eta(5)-sigma-(C5R4CHRCH2CRR4O)-C-1-C-2-R-3)TiCl2 through elimina tion of chlorotrimethylsilane and RCl (R = SiMe3, CH2Ph, CMe3). A potential ly tridentate system (R-1, R-2, R-3 = H, R-4 = -(CH2)(2)OMe) was synthesize d in optically pure form and its structure determined by X-ray diffraction. The pendant ether oxygen does not coordinate to the metal, and hydride tra nsfer reactions catalyzed by the complex gave racemic products. Efficient r outes to tetramethylcyclopentadienyl-substituted ligands (R-1 = Me) were de veloped on the basis of the addition of 2-butenylmagnesium bromide to gamma -lactones to give the dienyl alcohols [C(CH3)=CH(CH3)](2)C(OH)CHR2(CH2)(2)O H, which could be functionalized on the primary alcohol before acid-catalyz ed cyclization to afford the 3-alkoxypropyl-substituted tetramethylcyclopen tadienes.