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June 17, 2026Petroleum Chemistry0 citations

Ethylene/Propylene Copolymerization and Ethylene/Propylene/5-Ethylidene-2-Norbornene Terpolymerization Using Half-Sandwich Titanium Complexes with α-Naphthoxide Ligands as Catalysts

ССС. Л. СаратовскихInstitute of Problems of Chemical PhysicsIZIgor V. ZharkovInstitute of Problems of Chemical PhysicsСЖС. А. ЖуковInstitute of Problems of Chemical Physics

Key Points

  • The aim is to synthesize a new titanium complex for effective copolymerization of ethylene with propylene and 5-ethylidene-2-norbornene.
  • Synthesized Cp*Ti(1-C10H7O)Cl2 titanium complex with α-naphthoxide ligand.
  • Activated precatalysts with modified methylaluminoxane and perfluoroaryl boron activators.
  • Characterized copolymers' composition, molecular weight, and thermophysical properties after polymerization.
  • The new catalysts produced distinct low-molecular-weight and high-molecular-weight polyethylene fractions.
  • Copolymers exhibited unique thermophysical properties compared to previous titanium complexes.
  • Bimodal copolymers were attributed to two types of active sites generated during polymerization.

Abstract

Abstract A novel half-sandwich titanium complex, Cp*Ti(1-C10H7O)Cl2, containing an α-naphthoxide fragment, was synthesized. Modified methylaluminoxane (MMAO-12) and perfluoroaryl boron-containing activators B(C6F5)3 and Ph3CB(C6F5)4 combined with triisobutylaluminum were used to activate the precatalyst. The resulting catalysts produced binary and ternary copolymers of ethylene with propylene and 5-ethylidene-2-norbornene. The composition, molecular weight characteristics, and thermophysical properties of the copolymers—including those of ethylene/propylene copolymer samples after stepwise isothermal melt crystallization—were characterized. The copolymerization performance of the catalysts was compared with previously studied similar systems based on the half-sandwich titanium complex Cp*Ti(O2,6iPr2C6H3)Cl2. The properties of the copolymers were also assessed comparatively. The synthesized catalytic systems produced polymer mixtures consisting of low-molecular-weight (comonomer-enriched) fractions and high-molecular-weight polyethylene fractions, likely due to the generation of two different types of active sites responsible for producing bimodal copolymers.

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Cite This Study

Саратовских et al. (2026) studied this question.

synapsesocial.com/papers/6a323bf5d50b63ecad2065c8https://doi.org/10.1134/s0965544126600281
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