Reaction of 2,8-Bis(o‑hydroxyaryl)quinolines with Group 4 Metal Alkyls Resulting in Three Distinct Coordination Modes of the Tridentate Ligand. X‑ray Structure of Complexes and Performance as Precursors in Ethylene Polymerization Catalysis
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https://figshare.com/articles/dataset/Reaction_of_2_8_Bis_i_o_i_hydroxyaryl_quinolines_with_Group_4_Metal_Alkyls_Resulting_in_Three_Distinct_Coordination_Modes_of_the_Tridentate_Ligand_X_ray_Structure_of_Complexes_and_Performance_as_Precursors_in_Ethylene_Polymerization_Catalysis/2415964
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A series of bis(o-hydroxyphenyl)quinolines have been prepared, starting from 2,8-dibromoquinoline. Reaction of these new ligand precursors with group 4 tetrabenzyl complexes MBn4 results in benzyl substitution of the azine fragment with the formation of amide complexes (M = Ti) or amine complexes with an N–H fragment coordinated to the metal (M = Zr, Hf). The third structural typeZr complexes where the aromatic system of the precursor remains intactcan be prepared through the reaction of the bis(o-hydroxyphenyl)quinolones with 4 mol of methyllithium, followed by ZrCl4. The new complexes result in active polymerization catalysts when activated with MAO/borate cocatalysts on silica supports, resulting in polyethylene copolymers with very high molecular weights and multimodal MWDs.
创建时间:
2016-02-19



