Using density functional theory calculations we have studied ethylene polymerisation activity of experimentally studied aluminium amidinate homogeneous catalysts. We confirm an earlier picture for the amidinates that finite temperature effects need to be considered to rationalize catalytic activity. Static calculations do not provide any explanation for the experimentally observed activity. The tendency to form dinuclear complexes of various kinds makes this class of species rich in chemistry. The inadequacy of quantum calculations to provide accurate barriers for beta-hydrogen transfer for the real experimental systems, however, renders these systems also as computationally difficult and a challenge for future studies. (C) 2002 Elsevier Sc...
From Mechanistic Investigation to Quantitative Prediction: Kinetics of Homogeneous Transition Metal-...
The mechanism for the polymerization of ethylene via a mononuclear aluminum catalyst has been shown ...
The effect of substituent variation on olefin insertion and chain, transfer in cationic aluminum ami...
Aluminum amidinate species, found to be active in ethylene polymerization, have been studied using a...
The performance of correlated nb initio, methods and DFT methods was compared for the propagation an...
The performance of Density Functional Theory (DFT) methods in predicting ethylene polymerisation and...
A large number of DFT approaches, including classical GGA approximations, hybrid HF/DFT approaches, ...
We have studied the balance between olefin insertion and beta -hydrogen transfer to monomer for all ...
The ability of density functional models in dealing with polymerization mechanisms has been investig...
Computational investigations into four metal-centred polymerisation catalysts are presented. The wor...
The origin of variation in the activity of Ziegler-Natta (ZN) catalysts having chloride and alkoxy l...
One of the important product parameters of polyolefins is their molecular weight (distribution). A c...
Alkylation of olefin polymerization catalyst precursors with Me3Al (or MAO) is a crucial first step ...
The role of electronic factors in the variation of activity of Ziegler-Natta (ZN) catalysts having c...
From Mechanistic Investigation to Quantitative Prediction: Kinetics of Homogeneous Transition Metal-...
The mechanism for the polymerization of ethylene via a mononuclear aluminum catalyst has been shown ...
The effect of substituent variation on olefin insertion and chain, transfer in cationic aluminum ami...
Aluminum amidinate species, found to be active in ethylene polymerization, have been studied using a...
The performance of correlated nb initio, methods and DFT methods was compared for the propagation an...
The performance of Density Functional Theory (DFT) methods in predicting ethylene polymerisation and...
A large number of DFT approaches, including classical GGA approximations, hybrid HF/DFT approaches, ...
We have studied the balance between olefin insertion and beta -hydrogen transfer to monomer for all ...
The ability of density functional models in dealing with polymerization mechanisms has been investig...
Computational investigations into four metal-centred polymerisation catalysts are presented. The wor...
The origin of variation in the activity of Ziegler-Natta (ZN) catalysts having chloride and alkoxy l...
One of the important product parameters of polyolefins is their molecular weight (distribution). A c...
Alkylation of olefin polymerization catalyst precursors with Me3Al (or MAO) is a crucial first step ...
The role of electronic factors in the variation of activity of Ziegler-Natta (ZN) catalysts having c...
From Mechanistic Investigation to Quantitative Prediction: Kinetics of Homogeneous Transition Metal-...
The mechanism for the polymerization of ethylene via a mononuclear aluminum catalyst has been shown ...
The effect of substituent variation on olefin insertion and chain, transfer in cationic aluminum ami...