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XAS Analysis of Reactions of (Arylimido)vanadium(V) Dichloride Complexes Containing Anionic NHC That Contains a Weakly Coordinating B(CF) Moiety (WCA-NHC) or Phenoxide Ligands with Al Alkyls: A Potential Ethylene Polymerization Catalyst with WCA-NHC Ligands. | LitMetric

(Arylimido)vanadium(V) dichloride complexes containing anionic -heterocyclic carbene (NHC) ligands that contain weakly coordinating B(CF) moieties (WCA-NHC) of the type [V(NAr)Cl(WCA-NHC-Ar')] (, Ar = 2,6-MeCH, Ar' = 2,6- PrCH) showed significant catalytic activity for ethylene polymerization in the presence of Al cocatalysts (MAO and Al Bu); the activity by the -MAO catalyst (19 500 kg-PE/mol-V·h; TOF 11 600 min) is the highest among those reported using the other (imido)vanadium(V) complexes in the presence of MAO, and the -Al Bu catalyst showed higher activity (66 000 kg-PE/mol-V·h; TOF 39 200 min). The V K-edge X-ray absorption near-edge structure (XANES) analyses (in toluene) strongly suggest the formation of certain vanadium(III) species by reduction with Al Bu accompanying structural changes; the EXAFS analysis suggests the presence of the arylimido ligand and one V-Cl bond (2.34 ± 0.04 Å), which is longer than those [2.1901(8)-2.2462(8) Å] in the reported (imido)vanadium(V) complexes. The XANES analysis of [V(NAr)Cl(OAr)] strongly suggests the formation of the other vanadium(III) species by reduction with MeAlCl or EtAlCl, and the EXAFS analysis suggests the presence of the arylimido ligand and two V-Cl bonds (2.45 ± 0.03 Å). The XANES spectra showed no significant changes in both the pre-edge peak(s) and the edge peak when these complexes were treated with MAO, suggesting that the basic geometry and the high oxidation state were preserved under these conditions.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6854829PMC
http://dx.doi.org/10.1021/acsomega.9b02828DOI Listing

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