Zirconocene-catalyzed copolymerizations of ethylene with 5-methyl-1,4-hexadiene as non-conjugated diene
- Authors
- Jin, YH; Im, SS; Kim, SS; Kwak, S; Kim, KU; Kim, KH; Kim, J
- Issue Date
- 2002-04
- Publisher
- POLYMER SOC KOREA
- Citation
- MACROMOLECULAR RESEARCH, v.10, no.2, pp.97 - 102
- Abstract
- The mixtures of non-conjugated dienes. 4-methyl-1,4-hexadiene and 5-methyl-1,4-hexadiene (MHD), were successfully synthesized by the reaction of isoprene with ethylene using Fe(III)-based catalyst in toluene. The conversion was over 96 mol%, on the basis of the initial amount of isoprene used. The production yield for MHD was nearly 50 mol%, the other was polyisoprene. The mixtures were successfully copolymerized with ethylene by using zirconium-based metallocenes. The products were characterized by the combinations of gas chromatography, high temperature gel permeation chromatography. H-1 NMR. C-13 NMR, high temperature H-1 NMR, UV/Visible spectroscopy, and differential scanning calorimetry. It was found that 5-methyl-1,4-hexadiene was active enough to be incorporated into the copolymer chain but the corresponding isomeric material, 4-methyl-1,4-hexadiene, was inactive in metallocene-catalyzed copolymerizations. Specifically, in the zirconocene-catalyzed copolymerizations of ethylene with MHD, ansa-structure catalysts seem to be more efficient than non-bridged type zirconocene. The degree of incorporation of MHD in the resulting copolymers was able to be controlled by the amount of non-conjugated dienes used initially.
- Keywords
- METALLOCENE CATALYSTS; OLEFIN POLYMERIZATION; STYRENE; COMBINATION; MECHANISMS; PROPENE; METALLOCENE CATALYSTS; OLEFIN POLYMERIZATION; STYRENE; COMBINATION; MECHANISMS; PROPENE; zirconocene; copolymerization; functional poly(alpha-olefin); non-conjugated diene
- ISSN
- 1598-5032
- URI
- https://pubs.kist.re.kr/handle/201004/139657
- DOI
- 10.1007/BF03218297
- Appears in Collections:
- KIST Article > 2002
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