화학공학소재연구정보센터
Macromolecules, Vol.36, No.24, 9014-9019, 2003
Synthesis of long-chain branched comp-structured polyethylene from ethylene by tandem action of two single-site catalysts
The synthesis of long-chain branched polyethylene by copolymerization of ethylene with higher alpha-olefins has its limitations due to commercial availabilities of pure alpha-olefins above carbon lengths of C30. Soga(1) and Bazan(2) have shown the possibility of inserting side chains up to a length of 60 carbons into a growing polyethylene backbone. The details of combining [Me2C(CP)(2)]ZrCl2 (1) and [Me2Si((NBu)-Bu-t)(Me4Cp)]TiCl2 (2) to obtain long-chain branched polyethylene with branch lengths up to 350 carbons as well as the copolymerization profile and purification of the product throughout the Kumagawa extraction are discussed here. Compound 1 was used in a first oligomerization step to yield a macro-comonomer. Three different methods involving conventional copolymerization, tandem polymerization, and simultaneous entry of the catalysts were examined using 2 and MAO as cocatalyst to copolymerize different macro-comonomers with ethylene.