1996MacromoleculesRequires access

Synthesis of Hydroxyl Group Containing Polyolefins with Metallocene/Methylaluminoxane Catalysts

Päivi Aaltonen, Gerhard Fink, Barbro Löfgren, Jukka Seppälä

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Abstract

Ethylene and propylene were copolymerized with 10-undecen-1-ol, using stereorigid Et[Ind] 2 ZrCl 2, Me 2 Si[Ind] 2 ZrCl 2, Me 2 Si[2-MeInd] 2 ZrCl 2, and Me 2 Si[2-Me-4,5-BenzoInd] 2 ZrCl 2 catalysts activated with methylaluminoxane (MAO). As a reference, ethylene copolymerization was also carried out with the nonstereospecific catalyst [Ind] 2 ZrCl 2 /MAO. Characterization of the copolymers by 13 C and 1 H NMR spectroscopy revealed that the polymerization product was a true copolymer and that the conversion of the polar comonomer was strongly favored by the chiral geometry of the catalyst. The pretreatment of 10-undecen-1-ol with MAO before initiating the copolymerization increased the ethylene polymerization rate markedly and slightly improved the reactivity of the polar comonomer. A major improvement in the polymerization rate of 10-undecen-1-ol was obtained when the polymerization temperature and Al/Zr mole ratio were increased.

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Ethylene and propylene were copolymerized with 10-undecen-1-ol, using stereorigid Et[Ind] 2 ZrCl 2, Me 2 Si[Ind] 2 ZrCl 2, Me 2 Si[2-MeInd] 2 ZrCl 2, and Me 2 Si[2-Me-4,5-BenzoInd] 2 ZrCl 2 catalysts activated with methylaluminoxane (MAO). As a reference, ethylene copolymerization was also carried out with the nonstereospecific catalyst [Ind] 2 ZrCl 2 /MAO. Characterization of the copolymers by 13 C and 1 H NMR spectroscopy revealed that the polymerization product was a true copolymer and that the conversion of the polar comonomer was strongly favored by the chiral geometry of the catalyst. The pretreatment of 10-undecen-1-ol with MAO before initiating the copolymerization increased the ethylene polymerization rate markedly and slightly improved the reactivity of the polar comonomer. A major improvement in the polymerization rate of 10-undecen-1-ol was obtained when the polymerization temperature and Al/Zr mole ratio were increased.

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Available abstract

Ethylene and propylene were copolymerized with 10-undecen-1-ol, using stereorigid Et[Ind] 2 ZrCl 2, Me 2 Si[Ind] 2 ZrCl 2, Me 2 Si[2-MeInd] 2 ZrCl 2, and Me 2 Si[2-Me-4,5-BenzoInd] 2 ZrCl 2 catalysts activated with methylaluminoxane (MAO). As a reference, ethylene copolymerization was also carried out with the nonstereospecific catalyst [Ind] 2 ZrCl 2 /MAO. Characterization of the copolymers by 13 C and 1 H NMR spectroscopy revealed that the polymerization product was a true copolymer and that the conversion of the polar comonomer was strongly favored by the chiral geometry of the catalyst. The pretreatment of 10-undecen-1-ol with MAO before initiating the copolymerization increased the ethylene polymerization rate markedly and slightly improved the reactivity of the polar comonomer. A major improvement in the polymerization rate of 10-undecen-1-ol was obtained when the polymerization temperature and Al/Zr mole ratio were increased.

Key concepts: Comonomer, Methylaluminoxane, Metallocene, Copolymer, Polymer chemistry, Ethylene, Polymerization, Catalysis

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