4.7 Article

Synthesis of 1,2-bis(imidazolidin-2-imine)benzene nickel complexes and their application for norbornene (co)polymerization with styrene

Journal

EUROPEAN POLYMER JOURNAL
Volume 150, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.eurpolymj.2021.110426

Keywords

Imidazolidin-2-imine ligand; Nickel catalyst; Olefin polymerization; Cyclic olefin copolymer

Funding

  1. National Natural Science Foundation of China [21774018]
  2. Fundamental Research Funds for the Central Universities [2232020A-05]
  3. Program for Professor of Special Appointment (Eastern Scholar) at Shanghai Institutions of Higher Learning

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A series of 1,2-bis(imidazolidin-2-imine)benzene nickel complexes with different substituents were synthesized and characterized. The complexes showed tetrahedral configuration, with some exhibiting high steric hinderance and thermal stability. These nickel complexes were highly active for norbornene polymerization and copolymerization with styrene, forming uniform copolymers with tunable properties.
A series of 1,2-bis(imidazolidin-2-imine)benzene nickel complexes with different substituents on the imidazolidin-2-imine or benzene ring was synthesized and characterized. The complexes exhibited a tetrahedral configuration, and Ni2 bearing a phenyl substituent on the imine ligand provided highest steric hinderance around nickel center with a buried volume percentage of 53.1%. The nickel complexes in the presence methylaluminoxane (MAO) were highly active for the addition polymerization of norbornene and exhibited good thermal stability, where Ni3 bearing fluorine substituent on the benzene ligand backbone showed highest activity of 1.68 x 10(6) g.mol(-1).h(-1) at 100 degrees C to produce high molecular weight polynorbornene (1.2 x 10(5) g.mol(-1)). Most importantly, the catalysts promoted the copolymerization of norbornene and styrene with high activity (similar to 10(5) g.mol 1.h(-1)), high molecular weight (similar to 104 g.mol(-1)), and tunable styrene content (up to 17 mol %) and glass transition temperature. linear relationship between the glass transition temperature and styrene content indicated the formation of the uniform copolymers. A preference for the norbornene insertion in each catalytic system was investigated by the evaluation of the monomer reactivity ratios.

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