Chain end isomerization as a side reaction in metallocene-catalyzed ethylene and propylene polymerizations

Citation
P. Lehmus et al., Chain end isomerization as a side reaction in metallocene-catalyzed ethylene and propylene polymerizations, MACROMOLEC, 33(23), 2000, pp. 8534-8540
Citations number
18
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
MACROMOLECULES
ISSN journal
00249297 → ACNP
Volume
33
Issue
23
Year of publication
2000
Pages
8534 - 8540
Database
ISI
SICI code
0024-9297(20001114)33:23<8534:CEIAAS>2.0.ZU;2-2
Abstract
The relevance of chain end isomerization in ethylene and propylene homopoly merizations has been investigated using four Ct symmetric methylaluminoxane (MAO)-activated metallocene catalysts: rac-ethylenebis(1-indenyl)zirconium dichloride (1), rac-ethylenebis(2-(tert-butyldimethylsiloxy)-1-indenyl)zir conium dichloride (2), rac-ethylenebis(4,5,6,7-tetrahydro-1-indenyl)zirconi um dichloride (3), and rac-ethylenebis(1-(tert-butyldimethylsiloxy)-3-inden yl)zirconium dichloride (4). The amount of transvinylene groups in polyethy lene and the amount of stereoinverted CH2D groups in poly(1-d-propylene) me re used as a measure for chain end isomerization. The isomerization process was more favored for 3/MAO than for 1/MAO, 2/MAO, and 4/MAO. The presence of the bulky electron-donating 2-siloxy substituent in 2/MAO drastically su ppresses the isomerization reaction. Formation of trans-vinylene groups in polyethylene and d-[mrrm] stereoerrors in polypropylene were concluded to b e mechanistically related. Monomer-assisted chain termination after isomeri zation is proposed to explain the presence of chain end bound trans-vinylen e groups in polyethylenes produced with 1/MAO, 2/MAO, and 4/MAO.