Palladium-catalyzed polymerization of propene: DFT model studies

Citation
A. Michalak et T. Ziegler, Palladium-catalyzed polymerization of propene: DFT model studies, ORGANOMETAL, 18(20), 1999, pp. 3998-4004
Citations number
45
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
ORGANOMETALLICS
ISSN journal
02767333 → ACNP
Volume
18
Issue
20
Year of publication
1999
Pages
3998 - 4004
Database
ISI
SICI code
0276-7333(19990927)18:20<3998:PPOPDM>2.0.ZU;2-J
Abstract
Gradient-corrected density functional theory has been used to study ethylen e and propene polymerization catalyzed by N boolean AND N-Pd-II diimine com plexes with N boolean AND N = -NHCHCHNH- as a model ligand. Calculations ha ve been carried out on the [N boolean AND N-(PdR)-R-II{eta(2)-CH2CHR'}](+) polymerization precursor olefin complex (1; R' = H, CH3) as well. as the al kyl insertion product [N boolean AND N-(PdR)-R-II "](+) (2) with the alkyl chain R containing a primary, secondary, or tertiary alpha-carbon. Both 1,2 - and 2,1-insertions were considered for propene. The transition state TS ( 1,2) and the corresponding activation energies were determined for each inv estigated insertion process. Propene was found to prefer 2,1- over 1,2-inse rtion in all cases. The propene insertion barriers are higher than those of ethene and increase from 1 with R containing a primary alpha-carbon to R c ontaining a tertiary alpha-carbon. Also considered was the isomerization pr ocess N boolean AND N-(PdR)-R-II " (2) --> N boolean AND N-(PdR)-R-II''' (2 ') by a beta-hydrogen transfer process of the initial insertion product (2) . A chain-straightening isomerization reaction following the 2,1-insertion toward alkyl groups (R''') with reduced substitution of the alpha-carbon is not favorable. The relative stability of the isomers N boolean AND N-(PdR) -R-II''' (2') follows the corresponding relative stability of the R''' radi cals and would favor alkyl products with a high substitution on the alpha-c arbon. However, the final distribution of the N boolean AND N-(PdR)-R-II''' (2') products is also determined by the polymerization precursor olefin co mplex [N boolean AND N-(PdR)-R-II{eta(2)-CH2CHR'}](+) (1), for which steric factors favor low substitution at the alpha-carbon.