A DFT Mechanistic Study on Ethylene Tri- and Tetramerization with Cr/PNP Catalysts: Single versus Double Insertion Pathways
journal contribution
posted on 2023-05-19, 00:40authored byBritovsek, GJP, McGuinness, DS
The mechanism of ethylene trimerization and tetramerization with a chromium-diphosphinoamine (Cr-PNP) catalyst system has been studied by theoretical (DFT) methods. Two representative ligands have been explored, namely Ph2PN(Me)PPh2 and (o-MeC6H4)2PN(Me)P(o-MeC6H4)2. Calculations on the former ligand reveal how a combination of single and double ethylene insertion mechanisms may lead to 1-hexene, 1-octene and the major side products (cyclopentanes and n-alkanes). For the latter ligand, introduction of o-alkyl substitution leads to a more sterically congested active species, which suppresses the available pathways for tetramerization and side product formation. Hence, the high selectivity of o-aryl substituted PNP ligands for trimerization can be rationalized.
Funding
Australian Research Council
History
Publication title
Chemistry - A European Journal
Volume
22
Issue
47
Pagination
16891-16896
ISSN
0947-6539
Department/School
School of Natural Sciences
Publisher
Wiley - V C H Verlag GmbH & Co. KGaA
Place of publication
Germany
Rights statement
Copyright 2016 Wiley-VCH Verlag GmbH & Co.
Repository Status
Restricted
Socio-economic Objectives
Organic industrial chemicals (excl. resins, rubber and plastics)