We have studied the balance between olefin insertion and beta -hydrogen transfer to monomer for all "well-defined" aluminum polymerization catalysts reported to date. Consistently, the balance is predicted to be significantly worse than for Me2AlEt, implying that none of the proposed active species, should give a high-molecular-mass polymer. A more systematic analysis of ligand effects allows a rationalization of these results and shows that small modifications to the proposed active species are unlikely to solve the problem. We conclude that olefin polymerization at a single aluminum center is, rather unlikely. Alternative interpretations of the experimental data are discussed
The performance of correlated nb initio, methods and DFT methods was compared for the propagation an...
Aluminum amidinate species, found to be active in ethylene polymerization, have been studied using a...
One of the important product parameters of polyolefins is their molecular weight (distribution). A c...
We have studied the balance between olefin insertion and beta -hydrogen transfer to monomer for all ...
As an alternative to the standard Cossee mechanism, in which olefin insertion involves two sites at ...
Using density functional theory calculations we have studied ethylene polymerisation activity of exp...
A large number of DFT approaches, including classical GGA approximations, hybrid HF/DFT approaches, ...
As an alternative to the standard Cossee mechanism, in which olefin insertion involves two sites at ...
The mechanism for the polymerization of ethylene via a mononuclear aluminum catalyst has been shown ...
The ability of density functional models in dealing with polymerization mechanisms has been investig...
Aluminum complexes, specifically those employing bulky ligand frameworks such as sal (sal = 2-[CH	...
The effect of substituent variation on olefin insertion and chain, transfer in cationic aluminum ami...
The performance of correlated nb initio, methods and DFT methods was compared for the propagation an...
Aluminum amidinate species, found to be active in ethylene polymerization, have been studied using a...
One of the important product parameters of polyolefins is their molecular weight (distribution). A c...
We have studied the balance between olefin insertion and beta -hydrogen transfer to monomer for all ...
As an alternative to the standard Cossee mechanism, in which olefin insertion involves two sites at ...
Using density functional theory calculations we have studied ethylene polymerisation activity of exp...
A large number of DFT approaches, including classical GGA approximations, hybrid HF/DFT approaches, ...
As an alternative to the standard Cossee mechanism, in which olefin insertion involves two sites at ...
The mechanism for the polymerization of ethylene via a mononuclear aluminum catalyst has been shown ...
The ability of density functional models in dealing with polymerization mechanisms has been investig...
Aluminum complexes, specifically those employing bulky ligand frameworks such as sal (sal = 2-[CH	...
The effect of substituent variation on olefin insertion and chain, transfer in cationic aluminum ami...
The performance of correlated nb initio, methods and DFT methods was compared for the propagation an...
Aluminum amidinate species, found to be active in ethylene polymerization, have been studied using a...
One of the important product parameters of polyolefins is their molecular weight (distribution). A c...