4.5 Article

Influence of Backbone and Axial Substituent of Catalyst on α-Imino-ketone Nickel Mediated Ethylene (Co)Polymerization

期刊

CHINESE JOURNAL OF POLYMER SCIENCE
卷 40, 期 5, 页码 469-477

出版社

SPRINGER
DOI: 10.1007/s10118-022-2691-7

关键词

Olefin polymerization; alpha-Imino-ketone ligand; Nickel catalyst; Polar monomer

资金

  1. National Natural Science Foundation of China [22122110, 21871250, 22001244]
  2. Jilin Provincial Science and Technology Department Program [20200801009GH]

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In this study, a family of cationic nickel catalysts were synthesized and characterized. The influence of backbone and axial substituent on the catalytic performance of α-imino-ketone nickel catalyst was systematically investigated, and their effects on polymer properties were explored.
The alpha-imino-ketone nickel catalyst is an emerging versatile platform that is easy to prepare and allows for the production of branched high molecular weight functionalized polyethylenes. However, study on this catalyst system is rare thus far. In this contribution, by introducing different backbones, flexible and rigid axial substituents into the alpha-imino-ketone framework, a family of cationic nickel catalysts were synthesized and fully characterized. Without the addition of any activator, systematic studies on ethylene polymerization and copolymerization with polar monomers were performed to explore the influence of both backbone and axial substituent on catalytic activity, polymer molecular weight, branching density and incorporation. In particular, owing to the unique semi-opening feature of the alpha-imino-ketone framework, the preferred nickel catalyst exhibited high activity of 175 kg.mol(-1).h(-1) to produce functionalized polyethylene with molecular weight of 13.4 kg.mol(-1) and comonomer incorporation of 2.9 mol%.

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