In this paper we present a systematic comparison of the performance of different computational approaches to study the propagation and termination reactions of olefins with a prototype homogeneous group 4 ansa-metallocene catalyst. Chain propagation, beta-H transfer to the monomer, and beta-H elimination to the metal have been investigated for the H2Si-(CP)(2)ZrR+ (R = ethyl, n-butyl) + C2H4 system using ab initio and density functional theory (DFT) techniques. For all the species investigated, all the computational approaches we considered result in substantially similar geometries. A comparison of the DFT and Moller-Plesset theory (MP2) propagation and termination barriers with extrapolated coupled-cluster calculations with inclusion of single, double, and perturbatively connected triple excitation (CCSD(T)) values indicates that all the pure functionals considered underestimate the difference between termination and propagation by roughly 3-4 kcal/mol. In contrast, hybrid functionals are within 1 kcal/mol from extrapolated CCSD(T) values. For a comparison with experimental results inclusion of zero-point energy contributions and the use of an alkyl group longer than ethyl to simulate the growing chain in both termination reactions are mandatory.

Comparison of ab Initio and DFT Methods for Studying Chain Propagation and Chain Termination Processes with Group 4 Polymerization Catalysts. 1. The ansa-Bis(cyclopentadienyl)zirconium Catalyst / Talarico, Giovanni; BLOK A. N., J; WOO T., K; Cavallo, L.. - In: ORGANOMETALLICS. - ISSN 0276-7333. - STAMPA. - 21:(2002), pp. 4939-4949. [10.1021/om020315i]

Comparison of ab Initio and DFT Methods for Studying Chain Propagation and Chain Termination Processes with Group 4 Polymerization Catalysts. 1. The ansa-Bis(cyclopentadienyl)zirconium Catalyst

TALARICO, GIOVANNI;
2002

Abstract

In this paper we present a systematic comparison of the performance of different computational approaches to study the propagation and termination reactions of olefins with a prototype homogeneous group 4 ansa-metallocene catalyst. Chain propagation, beta-H transfer to the monomer, and beta-H elimination to the metal have been investigated for the H2Si-(CP)(2)ZrR+ (R = ethyl, n-butyl) + C2H4 system using ab initio and density functional theory (DFT) techniques. For all the species investigated, all the computational approaches we considered result in substantially similar geometries. A comparison of the DFT and Moller-Plesset theory (MP2) propagation and termination barriers with extrapolated coupled-cluster calculations with inclusion of single, double, and perturbatively connected triple excitation (CCSD(T)) values indicates that all the pure functionals considered underestimate the difference between termination and propagation by roughly 3-4 kcal/mol. In contrast, hybrid functionals are within 1 kcal/mol from extrapolated CCSD(T) values. For a comparison with experimental results inclusion of zero-point energy contributions and the use of an alkyl group longer than ethyl to simulate the growing chain in both termination reactions are mandatory.
2002
Comparison of ab Initio and DFT Methods for Studying Chain Propagation and Chain Termination Processes with Group 4 Polymerization Catalysts. 1. The ansa-Bis(cyclopentadienyl)zirconium Catalyst / Talarico, Giovanni; BLOK A. N., J; WOO T., K; Cavallo, L.. - In: ORGANOMETALLICS. - ISSN 0276-7333. - STAMPA. - 21:(2002), pp. 4939-4949. [10.1021/om020315i]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/166547
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