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Copolymerization of styrene and ethylene with mononuclear and dinuclear half-titanocenes

✍ Scribed by Dong-Ho Lee; Keun-Byoung Yoon; Hyun-Joon Kim; Sang-Sun Woo; Seok Kyun Noh


Book ID
101252281
Publisher
John Wiley and Sons
Year
1998
Tongue
English
Weight
305 KB
Volume
67
Category
Article
ISSN
0021-8995

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✦ Synopsis


With mononuclear half-titanocenes such as CpTiCl 3 , IndTiCl 3 , and Me 5 Cp-TiCl 3 , as well as the constrained geometry catalyst (CGC) and a new dinuclear hexamethyltrisiloxanediylbis(cyclopentadienyltitanium trichloride) (TSDT), the copolymerization of styrene and ethylene was examined. The thermal properties and structure of copolymerization products were investigated with differential scanning calorimetry and 13 C-nuclear magnetic resonance. In addition, the raw polymer was separated into homopolymer and copolymer with an extraction method and cross fractionation chromatography. With the above analysis, it was concluded that the raw polymer obtained with CpTiCl 3 and IndTiCl 3 was a mixture of syndiotactic polystyrene and polyethylene homopolymers with 10-30 wt % copolymer, whereas that produced by Me 5 CpTiCl 3 and TSDT was a homopolymer mixture with a negligible amount of copolymer. Only CGC produced the copolymer of styrene and ethylene perfectly.


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## Abstract The synthesis and characterization of a novel titanium complex, {[C~5~(CH~3~)~5~]ClTi}~2~O~2~C~2~(CH~3~)~4~(µ‐O) (2), which has two titanium metal centers linked by heteroleptic bridges, oxo and pinacolato, is described. The compound shows good stability under air. The 2/modified methyl