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Unprecedentedly High Activity and/or High Regio-/Stereoselectivity of Fluorenyl-Based CGC Allyl-Type η(3):η(1)-tert-Butyl(dimethylfluorenylsilyl)amido Ligated Rare Earth Metal Monoalkyl Complexes in Olefin Polymerization

A series of fluorenyl-based constrained-geometry-configuration (CGC) allyl-type rare earth metal monoalkyl complexes bearing the divalent anionic η(3):η(1)-tert-butyl(dimethylfluorenylsilyl)amido (η(3):η(1)-FluSiMe(2)N(t)Bu) ligand (η(3):η(1)-FluSiMe(2)N(t)Bu)Ln(CH(2)SiMe(3))(THF)(2) (1–3) have been...

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Detalles Bibliográficos
Autores principales: Guo, Ge, Wu, Xiaolu, Yan, Xiangqian, Yan, Li, Li, Xiaofang, Zhang, Shaowen, Qiu, Nannan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6572029/
https://www.ncbi.nlm.nih.gov/pubmed/31072012
http://dx.doi.org/10.3390/polym11050836
Descripción
Sumario:A series of fluorenyl-based constrained-geometry-configuration (CGC) allyl-type rare earth metal monoalkyl complexes bearing the divalent anionic η(3):η(1)-tert-butyl(dimethylfluorenylsilyl)amido (η(3):η(1)-FluSiMe(2)N(t)Bu) ligand (η(3):η(1)-FluSiMe(2)N(t)Bu)Ln(CH(2)SiMe(3))(THF)(2) (1–3) have been synthesized via the alkane elimination reaction between the FluHSiMe(2)NH(t)Bu ligand and rare earth metal tri(trimethylsilylmethyl) complexes Ln(CH(2)SiMe(3))(3)(THF)(n). Their structures are characterized by means of NMR spectrum, elemental analyses, and X-ray diffraction. These complexes 1–3 are isostructural and isomorphous, and each of them adopts a distorted-trigonal-bipyramidal configuration containing one η(3):η(1)-FluSiMe(2)N(t)Bu ligand, one CH(2)SiMe(3) ligand, and two THF molecules. Unlike traditional CGC allyl-type rare earth metal complexes showing no or low activity and regio-/stereoselectivity in styrene or MMA polymerization, these complexes 1–3 exhibit high catalytic activities and/or high regio-/stereoselectivities in the cis-1,4-polymerization of isoprene and myrcene or in the syndiotactic polymerization of styrene under the aid of different activators (borate or borane) and AlR(3). The in situ (1)H NMR spectra suggest that the exchanges of chelating ligands such as alkyl groups and divalent anionic η(3):η(1)-FluSiMe(2)N(t)Bu ligands between rare earth metal centers and Al centers result in the formation of a heterobimetallic tetraalkylaluminate complex R(2)Al(μ-R)(2)Ln(R)(μ-R)(2)AlR(2), which is activated by activators to form a divalent cationic species [Ln(μ-R)(2)AlR(2)](2+) as a catalytically active species in the coordination–insertion polymerization of olefins.