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The influence of the ligand structure on activation of hafnocene polymerization catalysts: A theoretical study
Authors:Virve A. Karttunen  Anniina Turunen  John R. Severn  Esa Kokko
Affiliation:a Department of Chemistry, University of Joensuu, P.O. Box 111, FI-80101 Joensuu, Finland
b Borealis Polymers Oy, R&D, P.O. Box 330, FIN-06101 Porvoo, Finland
Abstract:The influence of ligand structure of hafnocenes on activation of the polymerization catalysts has been studied by quantum chemical methods. Altogether 54 hafnocenes were included in the analysis, supplemented by four zirconocenes for comparison. The trends in structural and electronic parameters relevant in the catalyst activation step were studied for the dichloride, dimethyl and cationic monomethyl forms of the catalysts. The effects of ligand modifications were analyzed as functions of the metal, ancillary cyclopentadienyl-based ligand, ligand substituent and the ligand bridge, making comparisons to experimental data. Generally, large aromatic ligands together with electron donating ligand substituents stabilize the catalytically active species, thus facilitating the catalyst activation process. The obtained trends are expected to aid in the development of new high-performance polymerization catalysts.
Keywords:Ab initio calculations   Metallocenes   Hafnium   Activation   Methylation
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