C-2-bridged metallocene dichloride complexes of the types (C13H8-CH2CHR-C9H6-nR '(n))ZrCl2 and (C13H8-CH2CHR-C13H8)MCl2 (n = 0, 1; R = H, alkenyl; R ' = alkenyl, benzyl; M = Zr, Hf) as self-immobilizing catalyst precursors for ethylene polymerization
Hg. Alt et M. Jung, C-2-bridged metallocene dichloride complexes of the types (C13H8-CH2CHR-C9H6-nR '(n))ZrCl2 and (C13H8-CH2CHR-C13H8)MCl2 (n = 0, 1; R = H, alkenyl; R ' = alkenyl, benzyl; M = Zr, Hf) as self-immobilizing catalyst precursors for ethylene polymerization, J ORGMET CH, 580(1), 1999, pp. 1-16
A total of 15 C-2-bridged fluorenylidene indenylidene and bis(fluorenyliden
e) metal dichloride complexes (metal = Zr, Hf) and the corresponding ligand
precursors have been prepared and characterized. omega-Alkenyl substituent
s with various chain lengths in the C-2-bridge or in position 3 of the inde
nylidene moiety have an impact on the polymerization activity of the cataly
sts and the molecular weights of the produced polyethylenes. These omega-al
kenyl substituents cause 'self-immobilization' due to their incorporation i
nto the backbone of a growing polymer chain providing heterogeneous catalys
t systems. (C) 1999 Published by Elsevier Science S.A. All rights reserved.