Design of stereoselective Ziegler–Natta propene polymerization catalysts
Author(s) -
Vincenzo Busico,
Roberta Cipullo,
Roberta Pellecchia,
Sara Ronca,
Giuseppina Roviello,
Giovanni Talarico
Publication year - 2006
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.0602856103
Subject(s) - polyolefin , polymerization , natta , substituent , catalysis , propene , steric effects , chemistry , olefin fiber , rational design , ligand (biochemistry) , combinatorial chemistry , stereoselectivity , organic chemistry , materials science , nanotechnology , polymer , biochemistry , receptor , layer (electronics)
After five decades of largely serendipitous (albeit formidable) progress, catalyst design in Ziegler-Natta olefin polymerization, i.e., the rational implementation of new active species to target predetermined polyolefin architectures, has ultimately become a realistic ambition, thanks to a much deeper fundamental understanding and major advances in the tools of computational chemistry. In this article, we discuss, as a case history, a unique class of stereorigid C2-symmetric bis(phenoxy-amine)Zr(IV) catalysts with controlled kinetic behavior. A large variety of polypropylene microstructures have been obtained with these catalysts by modulating the steric demand of one key substituent, without altering the nature and symmetry of the ancillary ligand framework, under the guidance of computer modeling. This unusual achievement is relevant per se and for the perspective implications in catalyst discovery.
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