The performance of correlated nb initio, methods and DFT methods was compared for the propagation and chain transfer steps of ethylene polymerization by a model aluminum-amidinate system, [{HC(NH)2}AlCH(2)CH(3)](+). All methods agree that the main chain transfer mechanism is beta-hydrogen transfer to the monomer (BHT), and that this is substantially easier than propagation; implications for the real Jordan system are discussed briefly. Counterpoise corrections are necessary to obtain reasonable olefin complexation energies. Activation energies are consistently lower at DFT (BP86, B3LYP) than at nb initio levels [MP2, MP3, MP4, CI, CCSD(T)]; the differences are particularly large (16 kcal/mol) for the BHT reaction. This is suggested to be re...
The mechanism for the polymerization of ethylene via a mononuclear aluminum catalyst has been shown ...
We have studied the balance between olefin insertion and beta -hydrogen transfer to monomer for all ...
In this paper we present a systematic comparison of the performance of different computational appro...
The performance of correlated nb initio, methods and DFT methods was compared for the propagation an...
The ability of density functional models in dealing with polymerization mechanisms has been investig...
Using density functional theory calculations we have studied ethylene polymerisation activity of exp...
Aluminum amidinate species, found to be active in ethylene polymerization, have been studied using a...
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, ...
The mechanism responsible for the production of branched polyethylene from ethylene feed during its ...
The effect of substituent variation on olefin insertion and chain, transfer in cationic aluminum ami...
The mechanism responsible for the production of branched polyethylene from ethylene feed during its ...
The mechanism for the polymerization of ethylene via a mononuclear aluminum catalyst has been shown ...
We have studied the balance between olefin insertion and beta -hydrogen transfer to monomer for all ...
In this paper we present a systematic comparison of the performance of different computational appro...
The performance of correlated nb initio, methods and DFT methods was compared for the propagation an...
The ability of density functional models in dealing with polymerization mechanisms has been investig...
Using density functional theory calculations we have studied ethylene polymerisation activity of exp...
Aluminum amidinate species, found to be active in ethylene polymerization, have been studied using a...
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, ...
The mechanism responsible for the production of branched polyethylene from ethylene feed during its ...
The effect of substituent variation on olefin insertion and chain, transfer in cationic aluminum ami...
The mechanism responsible for the production of branched polyethylene from ethylene feed during its ...
The mechanism for the polymerization of ethylene via a mononuclear aluminum catalyst has been shown ...
We have studied the balance between olefin insertion and beta -hydrogen transfer to monomer for all ...
In this paper we present a systematic comparison of the performance of different computational appro...